We present an analysis of ring-wave and scatterometer data from a water surface that was agitated by simulated rain. Water droplets of 2.8 mm diameter impacted the water surface at almost terminal velocity, and the rain rates cover a wide range of conditions (5 to 200 mm hr(-1)). Both the ring-wave energy and backscattered power from the GHz scatterometer increase as R increases, but the growth rates slacken at higher rain intensities. Ring-wave frequency spectra and wavenumber spectra are well represented by log-Gaussian spectral models. The results can be used to guide development of microwave scattering models
Microwave signatures of the ocean surface are a¿ ected by wind and rain. To support the development ...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Rain drops falling into the ocean generate small centimetric water waves. These waves contibute to a...
This paper presents an analysis of drop size effects on ring-wave spectra and radar scatterometer re...
This paper presents an analysis of drop size effects on ring-wave spectra and radar scatterometer re...
Both wind and rain roughen the sea surface, but whereas wind generates waves, rain generates craters...
International audienceBoth wind and rain roughen the sea surface, but whereas wind generates waves, ...
Abstract — Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave...
Rain affects wind retrievals from scatterometric measurements of the sea surface. To depict the addi...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Thesis (Ph. D.)--University of Washington, 2004Microwave backscatter is used to probe the atmosphere...
International audienceThis paper investigates radar cross-section (RCS) characteristics of rain- and...
The long range goal remains unchanged; to conduct experiments and develop/test theoretical models to...
Microwave signatures of the ocean surface are a¿ ected by wind and rain. To support the development ...
Microwave signatures of the ocean surface are a¿ ected by wind and rain. To support the development ...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Rain drops falling into the ocean generate small centimetric water waves. These waves contibute to a...
This paper presents an analysis of drop size effects on ring-wave spectra and radar scatterometer re...
This paper presents an analysis of drop size effects on ring-wave spectra and radar scatterometer re...
Both wind and rain roughen the sea surface, but whereas wind generates waves, rain generates craters...
International audienceBoth wind and rain roughen the sea surface, but whereas wind generates waves, ...
Abstract — Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave...
Rain affects wind retrievals from scatterometric measurements of the sea surface. To depict the addi...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Thesis (Ph. D.)--University of Washington, 2004Microwave backscatter is used to probe the atmosphere...
International audienceThis paper investigates radar cross-section (RCS) characteristics of rain- and...
The long range goal remains unchanged; to conduct experiments and develop/test theoretical models to...
Microwave signatures of the ocean surface are a¿ ected by wind and rain. To support the development ...
Microwave signatures of the ocean surface are a¿ ected by wind and rain. To support the development ...
Radar observations of the ocean surface can be affected by impacting raindrops. Ring-wave measuremen...
Rain drops falling into the ocean generate small centimetric water waves. These waves contibute to a...