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Titlebook: Hurricane Monitoring With Spaceborne Synthetic Aperture Radar; Xiaofeng Li Book 2017 Springer Nature Singapore Pte Ltd. 2017 Synthetic ape

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Electromagnetic Scattering of Rainfall and Tropical Cyclones over Ocean,ccurred in North America at September 2016. Finally, numerical analyses suggest that rain-related scattering becomes significant as compared to wind-related scattering when the frequency is above C-band, while the raindrop volumetric scattering becomes significant above X-band.
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Book 2017azards using freely available images from the European Space Agency’s (ESA’s) Sentinel-1 SAR satellite and benchmarks a new interdisciplinary field at the interface between oceanography, meteorology and remote sensing. Following the launch of the first European Space Agency (ESA) operational synthet
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Book 2017 advance allows weather forecasters to view hurricanes in fine detail for the first time. As a result, the number of synthetic aperture radar research scientists working in this field is set to grow exponentially in the next decade; the book is a valuable resource for this large and budding audience..
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Observation of Sea Surface Wind and Wave in X-Band TerraSAR-X and TanDEM-X Over Hurricane Sandy,l Model Function (GMF) XMOD2 using wind direction derived from SAR images and the NOAA Hurricane Research Division (HRD) wind analyses are both presented for comparisons. We also compare the retrieved sea surface wind speed with Stepped Frequency Microwave Radiometer (SFMR) to quantify effect of rainfall on X-band SAR images.
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High Wind Speed Retrieval from Multi-polarization SAR,rivation are summarized. The validation results are presented using various GMFs and data sources. The intense effect of rainfall on SAR high winds retrieval is emphasized. We summarize potential challenges and provide possible solutions for high wind retrieval in the future.
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Tropical Cyclone Eye Morphology and Extratropical-Cyclone-Forced Mountain Lee Waves on SAR Imagery,-1A SAR image during the passage of an extratropical cyclone will be presented together with the use of the state-of-the-art atmospheric numerical model. The objective is to obtain a more complete understanding of the generation mechanism and the dynamics governing the gravity waves.
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