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Spatial Evaluation of Soil Moisture (SM), Land Surface Temperature (LST), and LST-Derived SM Indexes Dynamics during SMAPVEX12

机译:SMAPVEX12期间土壤水分(SM),地表温度(LST)和LST衍生的SM指数动态的空间评估

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Downscaling microwave soil moisture (SM) with optical/thermal remote sensing data has considerable application potential. Spatial correlations between SM and land surface temperature (LST) or LST-derived SM indexes (SMIs) are vital to the current optical/thermal and microwave fusion downscaling methods. In this study, the spatial correlations were evaluated at the same spatial scale using SMAPVEX12 SM data and MODIS dayight LST products. LST-derived SMIs was calculated using NLDAS-2 gridded meteorological data with conventional trapezoid and two-stage trapezoid models. Results indicated that (1) SM agrees better with daytime LST than the nighttime or the day-night differential LST; (2) the daytime LSTs on Aqua and Terra present very similar spatial agreement with SM and they have very similar performances as downscaling factors in simulating SM; (3) decoupling effect among SM, LST, and LST-derived SMIs occurs not only in very wet but also in very dry condition; and (4) the decoupling effect degrades the performance of LST as a downscaling factor. The future downscaling algorithms should consider net surface radiation and soil type to tackle the decoupling effect.
机译:利用光学/热遥感数据缩小微波土壤水分(SM)的规模具有巨大的应用潜力。 SM与陆面温度(LST)或LST衍生的SM指数(SMI)之间的空间相关性对于当前的光学/热和微波融合降尺度方法至关重要。在这项研究中,使用SMAPVEX12 SM数据和MODIS日/夜LST产品在相同的空间尺度上评估了空间相关性。 LST派生的SMI是使用NLDAS-2栅格化气象数据以及常规梯形和两阶段梯形模型计算得出的。结果表明:(1)SM与白天LST相比,在白天LST上的一致性更好; (2)Aqua和Terra上的白天LST与SM呈现出非常相似的空间一致性,并且在模拟SM方面作为缩减因子具有非常相似的性能; (3)SM,LST和LST衍生的SMI之间的去耦作用不仅发生在非常潮湿的环境中,而且发生在非常干燥的环境中; (4)去耦效应使LST的性能降低,成为降低比例的因素。未来的缩减算法应考虑净表面辐射和土壤类型,以解决去耦效应。

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