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R. Sonenshein

Publications and source records attributed to R. Sonenshein.

2 recordsLinked to original sources

Space-based detection of wetlands' surface water level changes from L-band SAR interferometry

Interferometric processing of JERS-1 L-band Synthetic Aperture Radar (SAR) data acquired over south Florida during 1993-1996 reveals detectable surface changes in the Everglades wetlands. Although our study is limited to south Florida it has implication for other large-scale wetlands, because south Florida wetlands have diverse vegetation types and both managed and natural flow environments. Our analysis reveals that interferometric coherence level is sensitive to wetland vegetation type and to the interferogram time span. Interferograms with time spans less than six months maintain phase observations for all wetland types, allowing characterization of water level changes in different wetland environments. The most noticeable changes occur between the managed and the natural flow wetlands. In the managed wetlands, fringes are organized, follow patterns related to some of the managed water control structures and have high fringe-rate. In the natural flow areas, fringes are irregular and have a low fringe-rate. The high fringe rate in managed areas reflects dynamic water topography caused by high flow rate due to gate operation. Although this organized fringe pattern is not characteristic of most large-scale wetlands, the high level of water level change enables accurate estimation of the wetland InSAR technique, which lies in the range of 5-10??cm. The irregular and low rate fringe pattern in the natural flow area reflects uninterrupted flow that diffuses water efficiently and evenly. Most of the interferograms in the natural flow area show an elongated fringe located along the transitional zone between salt- and fresh-water wetlands, reflecting water level changes due to ocean tides. ?? 2007 Elsevier Inc. All rights reserved.

Remote Sensing of Environment

Water resources data, Florida, water year 1984. Volume 2B. South Florida ground water

Water resources data for the 1984 water year in Florida consists of continuous or daily discharge for 251 streams, periodic discharge for 32 streams, miscellaneous discharge for 43 stream, continuous or daily stage for 92 streams, periodic stage for 31 streams, peak discharge for 60 streams, and peak stage for 37 streams; continuous or daily elevations for 73 lakes, periodic elevations for 82 lakes; continuous ground water levels for 467 wells, and periodic ground water levels for 539 wells; and miscellaneous water level measurement for 2,039 wells; quality of water data for 200 surface water sites and 596 wells. The data for south Florida includes continuous or daily discharge for 74 streams, periodic discharge for 2 streams, peak discharge for 2 streams, continuous or daily stage for 76 streams, and periodic stage for 29 streams; continuous elevation for 18 lakes and periodic elevations for 5 lakes; continuous ground water levels for 180 wells, periodic ground water levels for 130 wells, and miscellaneous water level measurements for 360 wells; quality of water for 40 surface water sites and for 310 wells. These data represent the National Water Data System records collected by the U.S. Geological Survey and cooperating local, state, and federal agencies in Florida.

Florida