Atmospheric and Climate Sciences

Atmospheric and Climate Sciences

ISSN Print: 2160-0414
ISSN Online: 2160-0422
www.scirp.org/journal/acs
E-mail: acs@scirp.org
"X-Band Mini Radar for Observing and Monitoring Rainfall Events"
written by Marco Allegretti, Silvano Bertoldo, Andrea Prato, Claudio Lucianaz, Oscar Rorato, Riccardo Notarpietro, Marco Gabella,
published by Atmospheric and Climate Sciences, Vol.2 No.3, 2012
has been cited by the following article(s):
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[13] The Web-based Framework of X-Band Polarimetric Radar System
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[16] Autocorrelation structure of convective rainfall in semiarid-arid climate derived from high-resolution X-Band radar estimates
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[17] Multifractal Comparison of Reflectivity and Polarimetric Rainfall Data from C-and X-Band Radars and Respective Hydrological Responses of a Complex Catchment …
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[20] Challenges in Estimating Quantitative Precipitation Estimation (QPE) Using Weather Radar Observation Over the Mountainous Country of Nepal
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[23] Accuracy of Quantitative Precipitation Estimation Using Operational Weather Radars: A Case Study of Heavy Rainfall on 9–10 September 2015 in the East Kanto Region, Japan
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[25] Real Time Monitoring of Extreme Rainfall Events with Simple X-Band Mini Weather Radar
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[29] 利用雨量雷达构建面雨量自动监测系统
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[30] Combining single polarization X-band radar and ground devices for hydrological applications
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[31] Extreme Rainfall Event Analysis Using Rain Gauges in a Variety of Geographical Situations
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[32] Storm Identification, Tracking and Forecasting Using High-Resolution Images of Short-Range X-Band Radar
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[34] Exploring single polarization X-band weather radar potentials for local meteorological and hydrological applications
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[35] A WEATHER MONITORING SYSTEM FOR THE STUDY OF PRECIPITATION FIELDS, WEATHER, AND CLIMATE IN AN URBAN AREA
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[36] Rainfall runoff modeling using doppler weather radar data
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[38] Performance of high-resolution X-band weather radar networks–the PATTERN example
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[39] DOPPLER WEATHER RADAR BASED RUNOFF ESTIMATION IN AN UNGAUGED WATERSHED
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[40] Finescale Orographic Precipitation Variability and Gap-Filling Radar Potential in Little Cottonwood Canyon, Utah
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[41] A weather monitoring system for the study of precipitation fields weather and climate in an urban area
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[42] Automatic storm (s) identification in high resolution, short range, X-band radar images
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[43] Characterization of the receiver filter of a X-band weather radar to improve the performance of an application to control the radar stability
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[44] Towards sustainable agricultural management using highresolution X-band radar precipitation estimates
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