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首页> 外文期刊>Geocarto international >Using Sentinel-1A DInSAR interferometry and Landsat 8 data for monitoring water level changes in two lakes in Crete, Greece
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Using Sentinel-1A DInSAR interferometry and Landsat 8 data for monitoring water level changes in two lakes in Crete, Greece

机译:使用Sentinel-1A Dinsar干涉测量法和Landsat 8用于监测克里特岛,希腊在克里特岛的两湖水水平变化的数据

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Differential Interferometric Synthetic Aperture Radar (DInSAR) methodology has been successfully employed to detect water level changes and produce corresponding water level variation maps. In this study, Agia and Kournas lakes, located in Western Crete, Greece, were used as pilot areas to monitor water level change with means of SAR interferometry and auxiliary Earth Observation (EO) data. The water level variation was monitored for the period 2015-2016, using Sentinel-1A imageries and corresponding stage water level data. Landsat 8 data were additionally used to study vegetation regime and surface water extent and how these parameters affect interferograms performance. The results highlighted the fact that the combination of SAR backscattering intensity and unwrapped phase can provide additional insight into hydrological studies. The overall analysis of both interferometric characteristics and backscattering mechanism denoted their potential in enhancing the reliability of the water-level retrieval scheme and optimizing the capture of hydrological patterns spatial distribution.
机译:已经成功地使用差动干涉性合成孔径雷达(Dinsar)方法来检测水位变化并产生相应的水位变异图。在这项研究中,位于希腊西部克里特岛的Agia和Kournas Lakes被用作试验区,以通过SAR干涉测量和辅助地球观测(EO)数据来监测水位变化。使用Sentinel-1a成像和相应的阶段水位数据监测2015 - 2016年期间的水位变化。 Landsat 8数据另外用于研究植被制度和地表水范围以及这些参数如何影响干扰图的性能。结果强调了SAR反向散射强度和未包销阶段的组合可以提供额外的洞察水文研究。干涉式特性和反向散射机构的总体分析表示其提高水位检索方案的可靠性以及优化水文模式空间分布的捕获。

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