Articles | Volume 9, issue 2
https://doi.org/10.5194/amt-9-535-2016
© Author(s) 2016. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/amt-9-535-2016
© Author(s) 2016. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Multi-sensor analysis of convective activity in central Italy during the HyMeX SOP 1.1
N. Roberto
CORRESPONDING AUTHOR
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
E. Adirosi
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
L. Baldini
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
D. Casella
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
S. Dietrich
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
P. Gatlin
NASA Marshall Space Flight Center, Huntsville, AL, USA
G. Panegrossi
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
M. Petracca
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
Department of Physics, University of Ferrara, Ferrara, Italy
CNR – Istituto di Scienze dell'Atmosfera e del Clima, Rome, Italy
A. Tokay
Joint Center for Earth Systems Technology, University of Maryland Baltimore
County, Baltimore, MD, USA
NASA Goddard Space Flight Center, Greenbelt, MD, USA
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The methodology is applied to six case studies that occurred in central Italy and the results are verified against LINET observations.
Advantages and weaknesses of the methodology are discussed.
R. Ferretti, E. Pichelli, S. Gentile, I. Maiello, D. Cimini, S. Davolio, M. M. Miglietta, G. Panegrossi, L. Baldini, F. Pasi, F. S. Marzano, A. Zinzi, S. Mariani, M. Casaioli, G. Bartolini, N. Loglisci, A. Montani, C. Marsigli, A. Manzato, A. Pucillo, M. E. Ferrario, V. Colaiuda, and R. Rotunno
Hydrol. Earth Syst. Sci., 18, 1953–1977, https://doi.org/10.5194/hess-18-1953-2014, https://doi.org/10.5194/hess-18-1953-2014, 2014
R. Checa-Garcia, A. Tokay, and F. J. Tapiador
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amtd-7-2339-2014, https://doi.org/10.5194/amtd-7-2339-2014, 2014
Preprint withdrawn
A. Mugnai, D. Casella, E. Cattani, S. Dietrich, S. Laviola, V. Levizzani, G. Panegrossi, M. Petracca, P. Sanò, F. Di Paola, D. Biron, L. De Leonibus, D. Melfi, P. Rosci, A. Vocino, F. Zauli, P. Pagliara, S. Puca, A. Rinollo, L. Milani, F. Porcù, and F. Gattari
Nat. Hazards Earth Syst. Sci., 13, 1959–1981, https://doi.org/10.5194/nhess-13-1959-2013, https://doi.org/10.5194/nhess-13-1959-2013, 2013
E. A. Smith, H. W.-Y. Leung, J. B. Elsner, A. V. Mehta, G. J. Tripoli, D. Casella, S. Dietrich, A. Mugnai, G. Panegrossi, and P. Sanò
Nat. Hazards Earth Syst. Sci., 13, 1185–1208, https://doi.org/10.5194/nhess-13-1185-2013, https://doi.org/10.5194/nhess-13-1185-2013, 2013
M. Formenton, G. Panegrossi, D. Casella, S. Dietrich, A. Mugnai, P. Sanò, F. Di Paola, H.-D. Betz, C. Price, and Y. Yair
Nat. Hazards Earth Syst. Sci., 13, 1085–1104, https://doi.org/10.5194/nhess-13-1085-2013, https://doi.org/10.5194/nhess-13-1085-2013, 2013
A. Mugnai, E. A. Smith, G. J. Tripoli, B. Bizzarri, D. Casella, S. Dietrich, F. Di Paola, G. Panegrossi, and P. Sanò
Nat. Hazards Earth Syst. Sci., 13, 887–912, https://doi.org/10.5194/nhess-13-887-2013, https://doi.org/10.5194/nhess-13-887-2013, 2013
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Subject: Others (Wind, Precipitation, Temperature, etc.) | Technique: Remote Sensing | Topic: Data Processing and Information Retrieval
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Atmos. Meas. Tech., 17, 1679–1701, https://doi.org/10.5194/amt-17-1679-2024, https://doi.org/10.5194/amt-17-1679-2024, 2024
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We present a new algorithm, CALOTRITON, for the retrieval of the convective boundary layer depth with ultra-high-frequency radar measurements. CALOTRITON is partly based on the principle that the top of the convective boundary layer is associated with an inversion and a decrease in turbulence. It is evaluated using ceilometer and radiosonde data. It is able to qualify the complexity of the vertical structure of the low troposphere and detect internal or residual layers.
Kamil Mroz, Alessandro Battaglia, and Ann M. Fridlind
Atmos. Meas. Tech., 17, 1577–1597, https://doi.org/10.5194/amt-17-1577-2024, https://doi.org/10.5194/amt-17-1577-2024, 2024
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In this study, we examine the extent to which radar measurements from space can inform us about the properties of clouds and precipitation. Surprisingly, our analysis showed that the amount of ice turning into rain was lower than expected in the current product. To improve on this, we came up with a new way to extract information about the size and concentration of particles from radar data. As long as we use this method in the right conditions, we can even estimate how dense the ice is.
Volker Wulfmeyer, Christoph Senff, Florian Späth, Andreas Behrendt, Diego Lange, Robert M. Banta, W. Alan Brewer, Andreas Wieser, and David D. Turner
Atmos. Meas. Tech., 17, 1175–1196, https://doi.org/10.5194/amt-17-1175-2024, https://doi.org/10.5194/amt-17-1175-2024, 2024
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A simultaneous deployment of Doppler, temperature, and water-vapor lidar systems is used to provide profiles of molecular destruction rates and turbulent kinetic energy (TKE) dissipation in the convective boundary layer (CBL). The results can be used for the parameterization of turbulent variables, TKE budget analyses, and the verification of weather forecast and climate models.
Daisuke Hotta, Katrin Lonitz, and Sean Healy
Atmos. Meas. Tech., 17, 1075–1089, https://doi.org/10.5194/amt-17-1075-2024, https://doi.org/10.5194/amt-17-1075-2024, 2024
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Global Navigation Satellite System (GNSS) polarimetric radio occultation (PRO) is a new type of GNSS observations that can detect heavy precipitation along the ray path between the emitter and receiver satellites. As a first step towards using these observations in numerical weather prediction (NWP), we developed a computer code that simulates GNSS-PRO observations from forecast fields produced by an NWP model. The quality of the developed simulator is evaluated with a number of case studies.
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Atmos. Meas. Tech., 17, 783–799, https://doi.org/10.5194/amt-17-783-2024, https://doi.org/10.5194/amt-17-783-2024, 2024
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Kuo-Nung Wang, Chi O. Ao, Mary G. Morris, George A. Hajj, Marcin J. Kurowski, Francis J. Turk, and Angelyn W. Moore
Atmos. Meas. Tech., 17, 583–599, https://doi.org/10.5194/amt-17-583-2024, https://doi.org/10.5194/amt-17-583-2024, 2024
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In this article, we described a joint retrieval approach combining two techniques, RO and MWR, to obtain high vertical resolution and solve for temperature and moisture independently. The results show that the complicated structure in the lower troposphere can be better resolved with much smaller biases, and the RO+MWR combination is the most stable scenario in our sensitivity analysis. This approach is also applied to real data (COSMIC-2/Suomi-NPP) to show the promise of joint RO+MWR retrieval.
Filippo Emilio Scarsi, Alessandro Battaglia, Frederic Tridon, Paolo Martire, Ranvir Dhillon, and Anthony Illingworth
Atmos. Meas. Tech., 17, 499–514, https://doi.org/10.5194/amt-17-499-2024, https://doi.org/10.5194/amt-17-499-2024, 2024
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The WIVERN mission, one of the two candidates to be the ESA's Earth Explorer 11 mission, aims at providing measurements of horizontal winds in cloud and precipitation systems through a conically scanning W-band Doppler radar. This work discusses four methods that can be used to characterize and correct the Doppler velocity error induced by the antenna mispointing. The proposed methodologies can be extended to other Doppler concepts featuring conically scanning or slant viewing Doppler systems.
Luis Ackermann, Joshua Soderholm, Alain Protat, Rhys Whitley, Lisa Ye, and Nina Ridder
Atmos. Meas. Tech., 17, 407–422, https://doi.org/10.5194/amt-17-407-2024, https://doi.org/10.5194/amt-17-407-2024, 2024
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The paper addresses the crucial topic of hail damage quantification using radar observations. We propose a new radar-derived hail product that utilizes a large dataset of insurance hail damage claims and radar observations. A deep neural network was employed, trained with local meteorological variables and the radar observations, to better quantify hail damage. Key meteorological variables were identified to have the most predictive capability in this regard.
Christos Gatidis, Marc Schleiss, and Christine Unal
Atmos. Meas. Tech., 17, 235–245, https://doi.org/10.5194/amt-17-235-2024, https://doi.org/10.5194/amt-17-235-2024, 2024
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A common method to retrieve important information about the microphysical structure of rain (DSD retrievals) requires a constrained relationship between the drop size distribution parameters. The most widely accepted empirical relationship is between μ and Λ. The relationship shows variability across the different types of rainfall (convective or stratiform). The new proposed power-law model to represent the μ–Λ relation provides a better physical interpretation of the relationship coefficients.
Liqin Jin, Jakob Mann, Nikolas Angelou, and Mikael Sjöholm
Atmos. Meas. Tech., 16, 6007–6023, https://doi.org/10.5194/amt-16-6007-2023, https://doi.org/10.5194/amt-16-6007-2023, 2023
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By sampling the spectra from continuous-wave Doppler lidars very fast, the rain-induced Doppler signal can be suppressed and the bias in the wind velocity estimation can be reduced. The method normalizes 3 kHz spectra by their peak values before averaging them down to 50 Hz. Over 3 h, we observe a significant reduction in the bias of the lidar data relative to the reference sonic data when the largest lidar focus distance is used. The more it rains, the more the bias is reduced.
Florian Günzkofer, Gunter Stober, Dimitry Pokhotelov, Yasunobu Miyoshi, and Claudia Borries
Atmos. Meas. Tech., 16, 5897–5907, https://doi.org/10.5194/amt-16-5897-2023, https://doi.org/10.5194/amt-16-5897-2023, 2023
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Electric currents in the ionosphere can impact both satellite and ground-based infrastructure. These currents depend strongly on the collisions of ions and neutral particles. Measuring ion–neutral collisions is often only possible via certain assumptions. The direct measurement of ion–neutral collision frequencies is possible with multifrequency incoherent scatter radar measurements. This paper presents one analysis method of such measurements and discusses its advantages and disadvantages.
Neranga K. Hannadige, Peng-Wang Zhai, Meng Gao, Yongxiang Hu, P. Jeremy Werdell, Kirk Knobelspiesse, and Brian Cairns
Atmos. Meas. Tech., 16, 5749–5770, https://doi.org/10.5194/amt-16-5749-2023, https://doi.org/10.5194/amt-16-5749-2023, 2023
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We evaluated the impact of three ocean optical models with different numbers of free parameters on the performance of an aerosol and ocean color remote sensing algorithm using the multi-angle polarimeter (MAP) measurements. It was demonstrated that the three- and seven-parameter bio-optical models can be used to accurately represent both open and coastal waters, whereas the one-parameter model has smaller retrieval uncertainty over open water.
Konstantin Ntokas, Jörn Ungermann, Martin Kaufmann, Tom Neubert, and Martin Riese
Atmos. Meas. Tech., 16, 5681–5696, https://doi.org/10.5194/amt-16-5681-2023, https://doi.org/10.5194/amt-16-5681-2023, 2023
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A nanosatellite was developed to obtain 1-D vertical temperature profiles in the mesosphere and lower thermosphere, which can be used to derive wave parameters needed for atmospheric models. A new processing method is shown, which allows one to extract two 1-D temperature profiles. The location of the two profiles is analyzed, as it is needed for deriving wave parameters. We show that this method is feasible, which however will increase the requirements of an accurate calibration and processing.
Maya García-Comas, Bernd Funke, Manuel López-Puertas, Norbert Glatthor, Udo Grabowski, Sylvia Kellmann, Michael Kiefer, Andrea Linden, Belén Martínez-Mondéjar, Gabriele P. Stiller, and Thomas von Clarmann
Atmos. Meas. Tech., 16, 5357–5386, https://doi.org/10.5194/amt-16-5357-2023, https://doi.org/10.5194/amt-16-5357-2023, 2023
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We have released version 8 of MIPAS IMK–IAA temperatures and pointing information retrieved from MIPAS Middle and Upper Atmosphere mode version 8.03 calibrated spectra, covering 20–115 km altitude. We considered non-local thermodynamic equilibrium emission explicitly for each limb scan, essential to retrieve accurate temperatures above the mid-mesosphere. Comparisons of this temperature dataset with SABER measurements show excellent agreement, improving those of previous MIPAS versions.
Josef Innerkofler, Gottfried Kirchengast, Marc Schwärz, Christian Marquardt, and Yago Andres
Atmos. Meas. Tech., 16, 5217–5247, https://doi.org/10.5194/amt-16-5217-2023, https://doi.org/10.5194/amt-16-5217-2023, 2023
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Atmosphere remote sensing using GNSS radio occultation provides a highly valuable basis for atmospheric and climate science. For the highest-quality demands, the Wegener Center set up a rigorous system for processing low-level measurement data. This excess-phase processing setup includes integrated quality control and uncertainty estimation. It was successfully evaluated and inter-compared, ensuring the capability of producing reliable long-term data records for climate applications.
Jingna Bai, Yidong Lou, Weixing Zhang, Yaozong Zhou, Zhenyi Zhang, Chuang Shi, and Jingnan Liu
Atmos. Meas. Tech., 16, 5249–5259, https://doi.org/10.5194/amt-16-5249-2023, https://doi.org/10.5194/amt-16-5249-2023, 2023
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Homogenized atmospheric water vapor data are an important prerequisite for climate analysis. Compared to other techniques, GPS has an inherent homogeneity advantage but requires reprocessing and homogenization to eliminate impacts of applied strategy and observation environmental changes. The low-elevation cut-off angles are suggested for the best estimates of zenith tropospheric delay (ZTD) reprocessing time series when compared to homogenized radiosonde data or ERA5 reference time series.
Lieuwe G. Tilstra, Martin de Graaf, Victor Trees, Pavel Litvinov, Oleg Dubovik, and Piet Stammes
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-222, https://doi.org/10.5194/amt-2023-222, 2023
Revised manuscript accepted for AMT
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This paper introduced a new surface albedo climatology of directionally dependent Lambertian-equivalent reflectivity (DLER) observed by the TROPOMI instrument on the Sentinel-5 Precursor satellite. The database contains monthly fields of DLER for 21 wavelength bands at a relatively high spatial resolution of 0.125 by 0.125 degrees. The anisotropy of the surface reflection is handled by parameterisation of the viewing angle dependence.
Daniel J. Zawada, Kimberlee Robyn Dubé, Taran W. Warnock, Adam Edward Bourassa, Susann Tegtmeier, and Douglas A. Degenstein
EGUsphere, https://doi.org/10.5194/egusphere-2023-2264, https://doi.org/10.5194/egusphere-2023-2264, 2023
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There remain large uncertainties in long term changes of stratospheric atmospheric temperatures. We have produced a more than 20 year time series of satellite-based temperature measurements from the OSIRIS instrument in the upper-middle stratosphere. The dataset is publicly available, and intended to be used to better understand changes in stratospheric temperatures.
James Barry, Stefanie Meilinger, Klaus Pfeilsticker, Anna Herman-Czezuch, Nicola Kimiaie, Christopher Schirrmeister, Rone Yousif, Tina Buchmann, Johannes Grabenstein, Hartwig Deneke, Jonas Witthuhn, Claudia Emde, Felix Gödde, Bernhard Mayer, Leonhard Scheck, Marion Schroedter-Homscheidt, Philipp Hofbauer, and Matthias Struck
Atmos. Meas. Tech., 16, 4975–5007, https://doi.org/10.5194/amt-16-4975-2023, https://doi.org/10.5194/amt-16-4975-2023, 2023
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Measured power data from solar photovoltaic (PV) systems contain information about the state of the atmosphere. In this work, power data from PV systems in the Allgäu region in Germany were used to determine the solar irradiance at each location, using state-of-the-art simulation and modelling. The results were validated using concurrent measurements of the incoming solar radiation in each case. If applied on a wider scale, this algorithm could help improve weather and climate models.
Wan Wu, Xu Liu, Liqiao Lei, Xiaozhen Xiong, Qiguang Yang, Qing Yue, Daniel K. Zhou, and Allen M. Larar
Atmos. Meas. Tech., 16, 4807–4832, https://doi.org/10.5194/amt-16-4807-2023, https://doi.org/10.5194/amt-16-4807-2023, 2023
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We present a new operational physical retrieval algorithm that is used to retrieve atmospheric properties for each single field-of-view measurement of hyper-spectral IR sounders. The physical scheme includes a cloud-scattering calculation in its forward-simulation part. The data product generated using this algorithm has an advantage over traditional IR sounder data production algorithms in terms of improved spatial resolution and minimized error due to cloud contamination.
Zhen Li, Ad Stoffelen, Anton Verhoef, Zhixiong Wang, Jian Shang, and Honggang Yin
Atmos. Meas. Tech., 16, 4769–4783, https://doi.org/10.5194/amt-16-4769-2023, https://doi.org/10.5194/amt-16-4769-2023, 2023
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WindRAD (Wind Radar) is the first dual-frequency rotating fan-beam scatterometer in orbit. We observe non-linearity in the backscatter distribution. Therefore, higher-order calibration (HOC) is proposed, which removes the non-linearities per incidence angle. The combination of HOC and NOCant is discussed. It can remove not only the non-linearity but also the anomalous harmonic azimuth dependencies caused by the antenna rotation; hence the optimal winds can be achieved with this combination.
Marco Gabella, Martin Lainer, Daniel Wolfensberger, and Jacopo Grazioli
Atmos. Meas. Tech., 16, 4409–4422, https://doi.org/10.5194/amt-16-4409-2023, https://doi.org/10.5194/amt-16-4409-2023, 2023
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A still wind turbine observed with a fixed-pointing radar antenna has shown distinctive polarimetric signatures: the correlation coefficient between the two orthogonal polarization states was persistently equal to 1. The differential reflectivity and the radar reflectivity factors were also stable in time. Over 2 min (2000 Hz, 128 pulses were used; consequently, the sampling time was 64 ms), the standard deviation of the differential backscattering phase shift was only a few degrees.
Carsten Schmidt, Lisa Küchelbacher, Sabine Wüst, and Michael Bittner
Atmos. Meas. Tech., 16, 4331–4356, https://doi.org/10.5194/amt-16-4331-2023, https://doi.org/10.5194/amt-16-4331-2023, 2023
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Two identical instruments in a parallel setup were used to observe the mesospheric OH airglow for more than 10 years (2009–2020) at 47.42°N, 10.98°E. This allows unique analyses of data quality aspects and their impact on the obtained results. During solar cycle 24 the influence of the sun was strong (∼6 K per 100 sfu). A quasi-2-year oscillation (QBO) of ±1 K is observed mainly during the maximum of the solar cycle. Unlike the stratospheric QBO the variation has a period of or below 24 months.
Andreas Wagner, Christian Chwala, Maximilian Graf, Julius Polz, Llorenç Lliso, José Alberto Lahuerta, and Harald Kunstmann
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-175, https://doi.org/10.5194/amt-2023-175, 2023
Revised manuscript accepted for AMT
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Commercial Microwave Links (CMLs) can be used for rainfall retrieval. The detection of rainy periods in their attenuation time series is the most important processing step. We investigate the usage of rainfall information from MSG SEVIRI for this task, compare these methods to existing methods, and finally combined both approaches. The results show advantages for SEVIRI based methods for light rain and poor performing CMLs. Our newly developed combination reveals the best overall performance.
Jason N. S. Cole, Howard W. Barker, Zhipeng Qu, Najda Villefranque, and Mark W. Shephard
Atmos. Meas. Tech., 16, 4271–4288, https://doi.org/10.5194/amt-16-4271-2023, https://doi.org/10.5194/amt-16-4271-2023, 2023
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Measurements from the EarthCARE satellite mission will be used to retrieve profiles of cloud and aerosol properties. These retrievals are combined with auxiliary information about surface properties and atmospheric state, e.g., temperature and water vapor. This information allows computation of 1D and 3D solar and thermal radiative transfer for small domains, which are compared with coincident radiometer observations to continually assess EarthCARE retrievals.
Luuk D. van der Valk, Miriam Coenders-Gerrits, Rolf W. Hut, Aart Overeem, Bas Walraven, and Remko Uijlenhoet
EGUsphere, https://doi.org/10.5194/egusphere-2023-1971, https://doi.org/10.5194/egusphere-2023-1971, 2023
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Microwave links, often part of mobile phone networks, can be used to measure rainfall along the link path by determining the signal loss caused by rainfall. We use high-frequency data of multiple microwave links to recreate commonly used sampling strategies. For time intervals up to 1 min, the influence of sampling strategies on estimated rainfall intensities is relatively little, while for intervals longer than 5–15 min, the sampling strategy can have significant influences on the estimates.
Anna Jurczyk, Katarzyna Ośródka, Jan Szturc, Magdalena Pasierb, and Agnieszka Kurcz
Atmos. Meas. Tech., 16, 4067–4079, https://doi.org/10.5194/amt-16-4067-2023, https://doi.org/10.5194/amt-16-4067-2023, 2023
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A data-processing algorithm, RainGRS Clim, has been developed to work on precipitation accumulations such as daily or monthly totals. The algorithm makes the most of additional opportunities: access to high-quality data that are not operationally available and greater efficiency of the algorithms for data quality control and merging for longer accumulations. Monthly accumulations estimated by RainGRS Clim were found to be significantly more reliable than accumulations generated operationally.
Xiaozhen Xiong, Xu Liu, Robert Spurr, Ming Zhao, Qiguang Yang, Wan Wu, and Liqiao Lei
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-159, https://doi.org/10.5194/amt-2023-159, 2023
Revised manuscript accepted for AMT
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The term “hotspot” refers to the sharp increase of reflectance occurring when incident (solar) and reflected (viewing) directions coincide in the backscatter direction. The accurate simulation of hotspot directional signatures is important for many remote sensing applications, but current models typically require large values of computations to represent the hotspot accurately. This paper developed an improved hotspot BRDF model that converges much faster and was tested in a model.
Sophie Rosenburg, Charlotte Lange, Evelyn Jäkel, Michael Schäfer, André Ehrlich, and Manfred Wendisch
Atmos. Meas. Tech., 16, 3915–3930, https://doi.org/10.5194/amt-16-3915-2023, https://doi.org/10.5194/amt-16-3915-2023, 2023
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Snow layer melting and melt pond formation on Arctic sea ice are important seasonal processes affecting the surface reflection and energy budget. Sea ice reflectivity was surveyed by airborne imaging spectrometers in May–June 2017. Adapted retrieval approaches were applied to find snow layer liquid water fraction, snow grain effective radius, and melt pond depth. The retrievals show the potential and limitations of spectral airborne imaging to map melting snow layer and melt pond properties.
Sunil Baidar, Timothy J. Wagner, David D. Turner, and W. Alan Brewer
Atmos. Meas. Tech., 16, 3715–3726, https://doi.org/10.5194/amt-16-3715-2023, https://doi.org/10.5194/amt-16-3715-2023, 2023
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This paper provides a new method to retrieve wind profiles from coherent Doppler lidar (CDL) measurements. It takes advantage of layer-to-layer correlation in wind profiles to provide continuous profiles of up to 3 km by filling in the gaps where the CDL signal is too small to retrieve reliable results by itself. Comparison with the current method and collocated radiosonde wind measurements showed excellent agreement with no degradation in results where the current method gives valid results.
Jake J. Gristey, K. Sebastian Schmidt, Hong Chen, Daniel R. Feldman, Bruce C. Kindel, Joshua Mauss, Mathew van den Heever, Maria Z. Hakuba, and Peter Pilewskie
Atmos. Meas. Tech., 16, 3609–3630, https://doi.org/10.5194/amt-16-3609-2023, https://doi.org/10.5194/amt-16-3609-2023, 2023
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The concept of a satellite-based camera is demonstrated for sampling the angular distribution of outgoing radiance from Earth needed to generate data products for new radiation budget spectral channels.
Eileen Päschke and Carola Detring
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-153, https://doi.org/10.5194/amt-2023-153, 2023
Revised manuscript accepted for AMT
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Little noise in radial velocity Doppler lidar measurements can contribute to large errors in retrieved turbulence variables. In order to distinguish between plausible and erroneous measurements we developed new filter techniques that work independently of the choice of a specific threshold for the signal-to-noise ratio. The performance of these techniques is discussed, both, by means of assessing the filter results, and by comparing retrieved turbulence variables versus independent measurements.
Lusheng Liang, Wenying Su, Sergio Sejas, Zachary A. Eitzen, and Norman G. Loeb
EGUsphere, https://doi.org/10.5194/egusphere-2023-1670, https://doi.org/10.5194/egusphere-2023-1670, 2023
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This paper describes an updated process to obtain unfiltered radiation from CERES satellite instruments by incorporating the most recent developments in radiative transfer modeling and ancillary input datasets (e.g., realistic representation of land surface radiation and climatology of surface temperatures and aerosols) during the past 20 years. The resulted global mean of instantaneous SW and LW fluxes are changed by less than 0.5 Wm-2 with regional differences can be as large as 2.0 Wm-2.
Martin Lainer, Killian P. Brennan, Alessandro Hering, Jérôme Kopp, Samuel Monhart, Daniel Wolfensberger, and Urs Germann
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-89, https://doi.org/10.5194/amt-2023-89, 2023
Revised manuscript accepted for AMT
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We present an approach for hail size estimation combining drone-based photogrammetry with a deep-learning object detection model. The method is applied to a hail event of a supercell that crossed Switzerland on June 20, 2021, allowing an accurate estimation of the hail size distribution (>18000 samples). Results are then compared with data from nearby automatic hail sensors and radar-based hail products. The opportunity to monitor the hail melting on the ground is also investigated.
Bing Cao and Alan Z. Liu
EGUsphere, https://doi.org/10.5194/egusphere-2023-1563, https://doi.org/10.5194/egusphere-2023-1563, 2023
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A narrow-band sodium lidar measures atmospheric waves but focuses on vertical variations. By analyzing phase shifts among laser beams in different directions, horizontal wave information can be derived. With this method, two wave packets were identified, propagating in different directions. These waves interacted with thin evanescent layers, reflecting partially but transmitting energy to higher altitudes. The method can be used to detect more gravity waves from similar lidar systems worldwide.
Gia Huan Pham, Shu-Chih Yang, Chih-Chien Chang, Shu-Ya Chen, and Cheng-Yung Huang
EGUsphere, https://doi.org/10.5194/egusphere-2023-1246, https://doi.org/10.5194/egusphere-2023-1246, 2023
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This research examines the characteristics of low-level GNSS radio occultation (RO) refractivity bias over ocean and land and their dependency on the RO retrieval uncertainty, atmospheric temperature, and moisture. We proposed methods for estimating the region-dependent refractivity bias. Our methods can be applied to calibrate the bias under different atmospheric conditions and thus improves the applications of the GNSS RO data in the planetary boundary layer.
Alex Meredith, Stephen Leroy, Lucy Halperin, and Kerri Cahoy
Atmos. Meas. Tech., 16, 3345–3361, https://doi.org/10.5194/amt-16-3345-2023, https://doi.org/10.5194/amt-16-3345-2023, 2023
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We developed a new efficient algorithm leveraging orbital dynamics to collocate radio occultation soundings with microwave radiance soundings. This new algorithm is 99 % accurate and is much faster than traditional collocation-finding approaches. Speeding up collocation finding is useful for calibrating and validating microwave radiometers and for data assimilation into numerical weather prediction models. Our algorithm can also be used to predict collocation yield for new satellite missions.
René Sedlak, Andreas Welscher, Patrick Hannawald, Sabine Wüst, Rainer Lienhart, and Michael Bittner
Atmos. Meas. Tech., 16, 3141–3153, https://doi.org/10.5194/amt-16-3141-2023, https://doi.org/10.5194/amt-16-3141-2023, 2023
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We show that machine learning can help in classifying images of the OH* airglow, a thin layer in the middle atmosphere (ca. 86 km height) emitting infrared radiation, in an efficient way. By doing this,
dynamicepisodes of strong movement in the OH* airglow caused predominantly by waves can be extracted automatically from large data sets. Within these dynamic episodes, turbulent wave breaking can also be found. We use these observations of turbulence to derive the energy released by waves.
Roberto Cremonini, Tanel Voormansik, Piia Post, and Dmitri Moisseev
Atmos. Meas. Tech., 16, 2943–2956, https://doi.org/10.5194/amt-16-2943-2023, https://doi.org/10.5194/amt-16-2943-2023, 2023
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Extreme rainfall for a specific location is commonly evaluated when designing stormwater management systems. This study investigates the use of quantitative precipitation estimations (QPEs) based on polarimetric weather radar data, without rain gauge corrections, to estimate 1 h rainfall total maxima in Italy and Estonia. We show that dual-polarization weather radar provides reliable QPEs and effective estimations of return periods for extreme rainfall in climatologically homogeneous regions.
Andrea Camplani, Daniele Casella, Paolo Sanò, and Giulia Panegrossi
Atmos. Meas. Tech. Discuss., https://doi.org/10.5194/amt-2023-94, https://doi.org/10.5194/amt-2023-94, 2023
Revised manuscript accepted for AMT
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A new snowfall retrieval algorithm developed especially for high latitude environmental conditions and based on Advanced Technology Microwave Sounder (ATMS) observations is described. The algorithm exploits ATMS low-frequency channels to retrieve the surface emissivity and compute the clear-sky brightness temperature, to highlight the snowfall signature. This information is used in a neural network based snowfall retrieval, trained against Cloud Profiling Radar snowfall products.
Vinícius Ludwig-Barbosa, Joel Rasch, Thomas Sievert, Anders Carlström, Mats I. Pettersson, Viet Thuy Vu, and Jacob Christensen
Atmos. Meas. Tech., 16, 1849–1864, https://doi.org/10.5194/amt-16-1849-2023, https://doi.org/10.5194/amt-16-1849-2023, 2023
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In this paper, the back-propagation method's capabilities and limitations regarding the location of irregularity regions in the ionosphere, e.g. equatorial plasma bubbles, are evaluated. The assessment was performed with simulations in which different scenarios were assumed. The results showed that the location estimate is possible if the amplitude of the ionospheric disturbance is stronger than the instrument noise level. Further, multiple patches can be located if regions are well separated.
Lars Norin
Atmos. Meas. Tech., 16, 1789–1801, https://doi.org/10.5194/amt-16-1789-2023, https://doi.org/10.5194/amt-16-1789-2023, 2023
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The atmosphere can cause radar beams to bend more or less towards the ground. When the atmosphere differs from standard atmospheric conditions, the propagation is considered anomalous. Radars affected by anomalous propagation can observe ground clutter far beyond the radar horizon. Here, 4.5 years' worth of data from five operational Swedish weather radars are presented. Analyses of the data reveal a strong seasonal cycle and weaker diurnal cycle in ground clutter from across nearby waters.
Mathieu Ratynski, Sergey Khaykin, Alain Hauchecorne, Robin Wing, Jean-Pierre Cammas, Yann Hello, and Philippe Keckhut
Atmos. Meas. Tech., 16, 997–1016, https://doi.org/10.5194/amt-16-997-2023, https://doi.org/10.5194/amt-16-997-2023, 2023
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Aeolus is the first spaceborne wind lidar providing global wind measurements since 2018. This study offers a comprehensive analysis of Aeolus instrument performance, using ground-based wind lidars and meteorological radiosondes, at tropical and mid-latitudes sites. The analysis allows assessing the long-term evolution of the satellite's performance for more than 3 years. The results will help further elaborate the understanding of the error sources and the behavior of the Doppler wind lidar.
Anne-Claire Billault-Roux, Gionata Ghiggi, Louis Jaffeux, Audrey Martini, Nicolas Viltard, and Alexis Berne
Atmos. Meas. Tech., 16, 911–940, https://doi.org/10.5194/amt-16-911-2023, https://doi.org/10.5194/amt-16-911-2023, 2023
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Better understanding and modeling snowfall properties and processes is relevant to many fields, ranging from weather forecasting to aircraft safety. Meteorological radars can be used to gain insights into the microphysics of snowfall. In this work, we propose a new method to retrieve snowfall properties from measurements of radars with different frequencies. It relies on an original deep-learning framework, which incorporates knowledge of the underlying physics, i.e., electromagnetic scattering.
Chia-Lun Tsai, Kwonil Kim, Yu-Chieng Liou, and GyuWon Lee
Atmos. Meas. Tech., 16, 845–869, https://doi.org/10.5194/amt-16-845-2023, https://doi.org/10.5194/amt-16-845-2023, 2023
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Since the winds in clear-air conditions usually play an important role in the initiation of various weather systems and phenomena, the modified Wind Synthesis System using Doppler Measurements (WISSDOM) synthesis scheme was developed to derive high-quality and high-spatial-resolution 3D winds under clear-air conditions. The performance and accuracy of derived 3D winds from this modified scheme were evaluated with an extreme strong wind event over complex terrain in Pyeongchang, South Korea.
Simone Kotthaus, Juan Antonio Bravo-Aranda, Martine Collaud Coen, Juan Luis Guerrero-Rascado, Maria João Costa, Domenico Cimini, Ewan J. O'Connor, Maxime Hervo, Lucas Alados-Arboledas, María Jiménez-Portaz, Lucia Mona, Dominique Ruffieux, Anthony Illingworth, and Martial Haeffelin
Atmos. Meas. Tech., 16, 433–479, https://doi.org/10.5194/amt-16-433-2023, https://doi.org/10.5194/amt-16-433-2023, 2023
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Profile observations of the atmospheric boundary layer now allow for layer heights and characteristics to be derived at high temporal and vertical resolution. With novel high-density ground-based remote-sensing measurement networks emerging, horizontal information content is also increasing. This review summarises the capabilities and limitations of various sensors and retrieval algorithms which need to be considered during the harmonisation of data products for high-impact applications.
Michael Frech, Cornelius Hald, Maximilian Schaper, Bertram Lange, and Benjamin Rohrdantz
Atmos. Meas. Tech., 16, 295–309, https://doi.org/10.5194/amt-16-295-2023, https://doi.org/10.5194/amt-16-295-2023, 2023
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Weather radar data are the backbone of a lot of meteorological products. In order to obtain a better low-level coverage with radar data, additional systems have to be included. The frequency range in which radars are allowed to operate is limited. A potential radar-to-radar interference has to be avoided. The paper derives guidelines on how additional radars can be included into a C-band weather radar network and how interferences can be avoided.
Yeeun Lee, Myoung-Hwan Ahn, Mina Kang, and Mijin Eo
Atmos. Meas. Tech., 16, 153–168, https://doi.org/10.5194/amt-16-153-2023, https://doi.org/10.5194/amt-16-153-2023, 2023
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This study aims to verify that a partly defective hyperspectral measurement can be successfully reproduced with concise machine learning models coupled with principal component analysis. Evaluation of the approach is performed with radiances and retrieval results of ozone and cloud properties. Considering that GEMS is the first geostationary UV–VIS hyperspectral spectrometer, we expect our findings can be introduced further to similar geostationary environmental instruments to be launched soon.
Mathias Gergely, Maximilian Schaper, Matthias Toussaint, and Michael Frech
Atmos. Meas. Tech., 15, 7315–7335, https://doi.org/10.5194/amt-15-7315-2022, https://doi.org/10.5194/amt-15-7315-2022, 2022
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This study presents the new vertically pointing birdbath scan of the German C-band radar network, which provides high-resolution profiles of precipitating clouds above all DWD weather radars since the spring of 2021. Our AI-based postprocessing method for filtering and analyzing the recorded radar data offers a unique quantitative view into a wide range of precipitation events from snowfall over stratiform rain to intense frontal showers and will be used to complement DWD's operational services.
Kenneth A. Brown and Thomas G. Herges
Atmos. Meas. Tech., 15, 7211–7234, https://doi.org/10.5194/amt-15-7211-2022, https://doi.org/10.5194/amt-15-7211-2022, 2022
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The character of the airflow around and within wind farms has a significant impact on the energy output and longevity of the wind turbines in the farm. For both research and control purposes, accurate measurements of the wind speed are required, and these are often accomplished with remote sensing devices. This article pertains to a field experiment of a lidar mounted to a wind turbine and demonstrates three data post-processing techniques with efficacy at extracting useful airflow information.
Cited articles
Albrecht, R., Morales, C., and Dias, M.: Electrification of precipitating
systems over the Amazon: Physical processes of thunderstorm development, J.
Geophys. Res., 116, D08209, https://doi.org/10.1029/2010JD014756, 2011.
Aydin, K. and Seliga, T. A.: Radar Polarimetric Backscattering Properties of
Conical Graupel. J. Atmos. Sci., 41, 1887–1892, 1984.
Baldini, L. and Gorgucci, E.: Identification of the melting layer through
dual-polarization radar measurements at vertical incidence, J. Atmos. Ocean. Tech., 23, 829–839, 2006.
Baldini, L., Gorgucci, E., Chandrasekar, V., and Petersen, W. A.:
Implementations of CSU hydrometeor classification scheme for C-band
polarimetric radars. Preprints, 32nd Conf. on Radar Meteorology,
Albuquerque, NM, Amer. Meteor. Soc., availale at: https://ams.confex.com/ams/pdfpapers/95865.pdf (last access: 8 February 2016), 2005.
Baldini, L., Roberto, N., Gorgucci, E., Fritz, J., and Chandrasekar, V.: Analysis
of dual polarization images of precipitating clouds collected by the COSMO
SkyMed constellation, Atmos Res., 144, 21–37, https://doi.org/10.1016/j.atmosres.2013.05.010, 2014.
Barber, P. and Yeh, C.: Scattering of electromagnetic waves by arbitrarily
shaped dielectric bodies, Appl. Optics, 14, 2864–2872, 1975.
Beard, K. V. and Chuang, C.: A new model for the equilibrium shapes of raindrops, J.
Atmos. Sci., 44, 1509–1524, 1987.
Betz, H.-D., Schmidt, K., Laroche, P., Blanche, P., Oettinger, W. P., Defer,
E., Dziewit, Z., and Konarski, J.: LINET – an international lightning
detection network in Europe, Atmos. Res., 91, 564–573, 2009.
Blyth, A. M., Christian, H. J., Driscoll, K., Gadian, A. M., and Latham J.:
Determination of ice precipitation rates and thunderstorm anvil ice contents
from satellite observations of lightning, Atmos. Res., 59–60, 217–229,
2001.
Bringi, V. N. and Chandrasekar, V.: Polarimetric Doppler Weather Radar,
Cambridge Univ. Press, Cambridge, UK, 2001.
Bringi, V. N., Rasmussen, R. M., and Vivekanandan, J.: Multiparameter radar
measurements in Colorado convective storms. Part I. Graupel melting studies,
J. Atmos. Sci., 43, 2545–2563, https://doi.org/10.1175/1520-0469(1986)043%3C2545:MRMICC%3E2.0.CO;2, 1986.
Bringi, V. N., Chandrasekar, V., Hubbert, J., Gorgucci, E., Randeu, W. L.,
and Schoenhuber M.: Raindrop size distribution in different climatic regimes
from disdrometer and dual-polarized radar analysis, J. Atmos Sci., 60,
354–365, 2003.
Bringi, V. N., Williams, C. R., Thurai, M., and May, P. T.: Using
dual-polarized radar and dual-frequency profiler for DSD characterization: a
case study from Darwin, Australia. J. Atmos. Ocean. Tech., 26,
2107–2122, 2009.
Carey L. D. and Rutledge, S. A.: A multiparameter radar case study of the
microphysical and kinematic evolution of a lightning producing storm, J. Meteorol. Atmos. Phys., 59, 33–64, 1996.
Carey, L. D. and Rutledge, S. A.: The relationship between precipitation and
lightning in tropical island convection: A C-band polarimetric radar study:
A C-band polarimetric radar study, Mon. Weather Rev., 128, 2687–2710,
2000.
Carey, L. D. and Rutledge S. A.: Characteristics of cloud-to-ground lightning
in severe and nonsevere storms over the central United States from
1989–1998, J. Geophys. Res., 108, 4483, https://doi.org/10.1029/2002JD002951,
2003.
Chandrasekar, V., Fukatsu, H., and Mubarak, K.: Global mapping of
attenuation at Ku- and Ka-band, IEEE T. Geosci. Remote, 41, 2166–2176, 2003.
Cummins, K. L., Murphy M. J., and Tuel, J. V.: Lightning detection methods and
meteorological applications, Proc. Of the IV International Symposium on
Military Meteorology, 25–28 September 2000, Malbork, Poland, 2000.
Deierling, W. and Petersen, W. A.: Total lightning activity as an indicator
of updraft characteristics, J. Geophys. Res., 113, D16210, https://doi.org/10.1029/2007JD009598, 2008.
Deierling, W., Petersen, W. A., Latham, J., Ellis, S., and Christian, H. J.: The
relationship between lightning activity and ice fluxes in thunderstorms, J.
Geophys. Res., 113, D15210, https://doi.org/10.1029/2007JD009700, 2008.
Dolan, B. and Rutledge, S. A.: A theory-based hydrometeor identification algorithm
for X-band polarimetric radars, J. Atmos. Ocean. Tech., 26, 2071–2088, 2009.
Dolan, B., Rutledge, S. A., Lim, S., Chandrasekar, V., and Thurai, M.: A robust C-band
hydrometeor identification algorithm and application to a long-term
polarimetric radar dataset, J. Appl. Meteorol. Clim., 52, 2162–2186,
2013.
Ducrocq, V., Braud, I., Davolio S., Ferretti R., Flamant C., Jansa A.,
Kalthoff, N., Richard, E., Taupier-Letage I., Ayral, P.A., Belamari, S.,
Berne, A., Borga, M., Boudevillain B., Bock O., Boichard, J. L., Bouin, M.
N., Bousquet, O., Bouvier, C., Chiggiato, J., Cimini, D., Corsmeier, U.,
Coppola, L., Cocquerez, P., Defer, E., Delanoe, J., Girolamo, P.D.,
Doerenbecher, A., Drobinski, P., Dufournet, Y., Fourrie, N., Gourley, J.J.,
Labatut, L., Lambert, D., Le Coz, J., Marzano F.S., Molinie, G., Montani, A.,
Nord, G., Nuret, M., Ramage, K., Rison, B., Roussot, O., Said, F.,
Schwarzenboeck, A., Testor, P., Baelen, J.V., Vincendon, B., Aran, M., and
Tamayo, J.: HyMeX-SOP 1, the field campaign dedicated to heavy precipitation
and flash flooding in the northwestern Mediterranean, B. Am. Meteorol. Soc.,
95, 1083–1100, 2014.
Evaristo, R., Bals-Elsholz, T. M., Williams, E. R., Smalley, D. J., Donovan, M.
F., and Fenn A.: Relationship of graupel shape to differential reflectivity:
Theory and observations. Proceedings, 93rd Amer. Meteor. Soc. Annual Meeting, Austin, TX, USA, Amer. Meteor. Soc., 1–9, 5–10 January 2013,
available at: https://ams.confex.com/ams/93Annual/webprogram/Paper214462.html (last access: 8 February 2016),
2013.
Federico, S., Avolio, E., Petracca, M., Panegrossi, G., Sanò, P., Casella,
D., and Dietrich, S.: Simulating lightning into the RAMS model:
implementation and preliminary results, Nat. Hazards Earth Syst. Sci., 14,
2933–2950, https://doi.org/10.5194/nhess-14-2933-2014, 2014.
Ferretti, R., Pichelli, E., Gentile, S., Maiello, I., Cimini, D., Davolio,
S., Miglietta, M. M., Panegrossi, G., Baldini, L., Pasi, F., Marzano, F. S.,
Zinzi, A., Mariani, S., Casaioli, M., Bartolini, G., Loglisci, N., Montani,
A., Marsigli, C., Manzato, A., Pucillo, A., Ferrario, M. E., Colaiuda, V.,
and Rotunno, R.: Overview of the first HyMeX Special Observation Period over
Italy: observations and model results, Hydrol. Earth Syst. Sci., 18,
1953–1977, https://doi.org/10.5194/hess-18-1953-2014, 2014.
Formenton, M., Panegrossi, G., Casella, D., Dietrich, S., Mugnai, A.,
Sanò, P., Di Paola, F., Betz, H.-D., Price, C., and Yair, Y.: Using a
cloud electrification model to study relationships between lightning activity
and cloud microphysical structure, Nat. Hazards Earth Syst. Sci., 13,
1085–1104, https://doi.org/10.5194/nhess-13-1085-2013, 2013.
Friedrich, K., Kalina, E. A., Masters, F. J., and Lopez, C. R.: Drop-Size
distributions in thunderstorms measured by optical disdrometers during
VORTEX2, Mon. Weather Rev., 141, 1182–1203, 2013.
Gatlin, P. N. and Goodman, S. J.: A total lightning trending algorithm to
identify severe thunderstorms, J. Atmos. Ocean. Tech., 27, 3–22, 2010.
Goodman, S. J., Buechler, D. E., and Wright, P. D.: Polarization radar and
electrical observations of microburst producing storms during COHMEX, AMS
24th Conference on Radar Meteorology, 27–31 March 1989, Tallahassee FL, USA,
1989.
Heymsfield, A. J.: The characteristics of graupel particles in northeastern
Colorado cumulus congestus clouds, J. Atmos. Sci., 35, 284–295, 1978.
Lagouvardos, K., Kotroni, V., Defer, E., and Bousquet, O.: Study of a heavy
precipitation event over southern France, in the frame of HYMEX project:
Observational analysis and model results using assimilation of lightning,
Atmos. Res., 134, 45–55, https://doi.org/10.1016/j.atmosres.2013.07.003, 2013.
Lang, S., Tao, W.-K., Simpson, J., and Ferrier, B.: Modeling of
convective-stratiform precipitation processes: Sensitivity to partitioning
methods, J. Appl. Meteorol., 42, 505–527, 2003.
Lang T. J. and Rutledge S. A.: Relationships between convective storm
kinematics, precipitation, and lightning, Mon. Weather Rev., 130, 2492–2506,
2002.
Latham, J., Blyth, A. M., Christian Jr., J. H., Deierling, W., and Gadian A. M.:
Determination of precipitation rates and yields from lightning measurements,
J. Hydrol., 288, 13–19, 2004.
Latham, J., Petersen, W. A., Deierling, W., and Christian Jr., H. J.: Field
identification of a unique globally dominant mechanism of thunderstorm
electrification, Q. J. Roy. Meteor. Soc., 133, 1453–1457, 2007.
Lim, S., Chandrasekar, V., and Bringi, V. N.: Hydrometeor classification system
using dual-polarization radar measurements: model improvements and in situ
verification, IEEE Trans. Geosci. Remote Sens., 43, 792–801, 2005.
Liu, H. and Chandrasekar, V.: Classification of hydrometeor based on polarimetric
radar measurements: Development of fuzzy logic and neuro- fuzzy systems and
in situ verification, J. Atmos. Ocean Tech., 17, 140–164, 2000.
López R. E. and Aubagnac J. P.: The lightning activity of a hailstorm as a
function of changes in its microphysical characteristics inferred from
polarimetric radar observations, J. Geophys. Res., 102, 16799–16813, https://doi.org/10.1029/97JD00645, 1997.
Lynn, B., Yair, Y., Price, C., Kelman, G., and Clark, A. J.: Predicting
cloud-to-ground and intracloud lightning in Weather Forecast Models, Weather
Forecast., 27, 1470–1488, https://doi.org/10.1175/WAF-D-11-00144.1, 2012.
Machado, L. A. T, Silva Dias, M. A. F., Morales, C. A., Fisch, G. F., Vila,
D., Albrecht, R., Goodman, S. J., Calheiros, A. J. P., Biscaro T, Kummerow
C., Cohen, J., Fitzjarrald, D., Nascimento, E., Sakamoto, M., Cunningham, C.,
Chaboureau, J. P., Petersen, W. A., Adams, D., Baldini, L., Angelis, C. F.,
Sapucci, L. F., Salio P, Barbosa, H. M. J., Landulfo, E., Souza, R.F.,
Blakeslee, R.J., Bailey, J., Freitas, S., Lima, W. F., and Tokay, A.: The
CHUVA Project – how does convection vary across Brazil?, B. Am. Meteorol.
Soc., 95, 1365–1380, 2013.
Marzano F. S., Cimini D., and Montopoli M.: Investigating precipitation
microphysics using ground-based microwave remote sensors and disdrometer
data, Atmos. Res., 97, 583–600, 2010.
Melani, S., Pasi, F., Gozzini, B., and Ortolani, A.: A four year (2007–2010)
analysis of longlasting deep convective systems in the Mediterranean basin,
6th European Conference on Severe Storms 2011, Palma de Mallorca, Spain,
Atmos. Res., 123, 151–166, 2013.
Miglietta, M. M. and Rotunno, R.: Application of theory to observed cases of
orographically forced convective rainfall, Mon. Weather Rev., 140,
3039–3053, 2012.
Mosier, R. M., Schumacher, C., Orville, R. E., and Carey, L. D: Radar
nowcasting of cloud-to-ground lightning over Houston, Texas, Weather
Forecast., 26, 199–212, 2011.
Petersen, W. A. and Jensen, M.: The NASA-GPM and DOE-ARM Midlatitude
Continental Convective Clouds Experiment (MC3E). The Earth Observer, Vol. 24,
Issue 1, Earth Observing System Project Science Office, NASA GSFC, Greenbelt,
MD, 12–18, available at: http://eospso.nasa.gov/sites/default/files/eo_pdfs/Jan_Feb_2012_col_508.pdf (last access: 17 February 2016), 2012.
Petersen, W. A. and Rutledge S. A.: On the relationship between cloud-to-ground
lightning and convective rainfall, J. Geophys. Res., 103, 14025–14040,
1998.
Petersen, W. A., Christian Jr., H. J., and Rutledge, S. A.: TRMM observations
of the global relationship between ice water content and lightning, Geophys.
Res. Lett., 32, L14819, https://doi.org/10.1029/2005GL023236, 2005.
Petracca, M., Casella, D., Dietrich, S., Panegrossi, G., and Sanò, P.:
Multisensor Atmospheric data Mapping System: a Web-based graphic tool for
multisensor observations of atmospheric data and NWP model forecasts,
Eumetsat Meteorological Satellite Conference, 16–20 September 2013, Vienna,
Austria, 2013.
Preston, A. D. and Fuelberg, H. E.: Improving lightning cessation guidance
using polarimetric radar data, Weather Forecast., 30, 308–328, 2015.
Pruppacher H. R. and Klett J. D.: Microphysics of clouds and precipitation,
D. Reidel Publishing company, 10–73, 1978.
Saunders, C. P. R.: A review of thunderstorm electrification processes, J.
Appl. Meteorol., 32, 642–655, 1993.
Schönhuber, M., Lammer, G., Randeu, W. L.: The 2-D-video-distrometer.
Precipitation: advances in measurement, estimation and prediction, edited by: Michaelides, S., Springer, 3–32,
2008.
Sebastianelli, S., Russo, F., Napolitano, F., and Baldini, L.: On
precipitation measurements collected by a weather radar and a rain gauge
network, Nat. Hazards Earth Syst. Sci., 13, 605–623,
https://doi.org/10.5194/nhess-13-605-2013, 2013.
Straka, J. M., Zrnic, D. S., and Ryzhkov, A. V.: Bulk Hydrometeor
Classification and Quantification Using Polarimetric Radar Data: Sythesis of
Relations, J. Appl. Meteorol., 39, 1341–1372, 2000.
Tokay, A., Kruger, W., and Krajewski, J.: Comparison of drop size distribution
measurements by impact and optical disdrometers, J. Appl. Meteorol., 40,
2083–2097, 2001.
Tokay, A., Petersen, W. A., Gatlin, P., and Wingo, M.: Comparison of raindrop
size distribution measurements by collocated disdrometers, J. Atmos. Ocean. Tech., 30, 1672–1690, 2013.
Wang, P. K.: Mathematical description of the shape of conical hydrometeors,
J. Atmos. Sci. 39, 2615–2622, 1982.
Weisman, M. L., Davies, C., Wang, W., Manning, K. W., and Klemp, J. B.:
Experiences with 0-36-h explicit convective forecasts with the WRF-ARW
model, Weather Forecast., 23, 407–437, 2008.
Wiens, K. C., Rutledge, S. A., and Tessendorf, S. A.: The 29 June 2000 supercell
observed during STEPS. Part II: Lightning and charge structure, J. Atmos.
Sci., 62, 4151–4177, 2005.
Woodard, C. J., Carey, L. D., Petersen, W. A., and Roeder, W. P.: Operational
utility of dual-polarization variables in lightning initiation forecasting,
Electronic J. Operational Meteor., 13, 79–102, 2012.
Wu, D., Dong, X., Xi, B., Feng, Z., Kennedy, A., Mullendore, G., Gilmore, M., and
Tao, W.-K.: Impacts of microphysical scheme on convective and stratiform
characteristics in two high precipitation squall line events, J. Geophys.
Res.-Atmos., 118, 11119–11135, 2013.
Yair, Y., Shalev, S., Erlich, Z., Agrachov, A., Katz, E., Saaroni, H., Price,
C., and Ziv, B.: Lightning flash multiplicity in eastern Mediterranean
thunderstorms, Nat. Hazards Earth Syst. Sci., 14, 165–173,
https://doi.org/10.5194/nhess-14-165-2014, 2014.
Zikmunda, J. and Vali, G.: Fall patterns and fall velocities of rimed ice
crystals, J. Atmos. Sci., 29, 1334–1347, 1972.
Zinner, T., Forster, C., de Coning, E., and Betz, H.-D.: Validation of the
Meteosat storm detection and nowcasting system Cb-TRAM with lightning network
data – Europe and South Africa, Atmos. Meas. Tech., 6, 1567–1583,
https://doi.org/10.5194/amt-6-1567-2013, 2013.
Short summary
This study examines various microphysical properties of liquid and solid hydrometeors to investigate their relationship with lightning activity. Measurements were collected from the Polar 55C dual-polarization radar, a 2-DVD, and LINET. From the analysis of three significant case studies, linear relations between the total mass of graupel and the number of strokes were found. Results point out the key role of ice mass in determining the electrical charging of convective clouds.
This study examines various microphysical properties of liquid and solid hydrometeors to...