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Comparing Scatterometric and Radiometric Simulations With Geophysical Model Functions to Tune a Sea Wave Spectrum Model

机译:将散射和辐射模拟与地球物理模型功能进行比较以调整海浪频谱模型

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摘要

A unified approach to simulate both microwave radiometric and scatterometric observations over a sea surface based on the two-scale electromagnetic scattering model has been implemented. The simulations have been compared with empirically derived geophysical model functions (GMFs) for the purpose of tuning the electromagnetic forward model and the embedded sea surface characterization and wave spectrum. The comparison has concerned a large number of wind speeds, frequencies, and observation angles for both the passive and active cases. Two widely adopted literature spectra have been used as benchmarks. A new expression for the hydrodynamic modulation function has been developed too. The proposed new spectrum has allowed us to reproduce both the passive and active GMFs' behaviors fairly well, generally improving the agreement yielded by literature models, particularly for scatterometric simulations.
机译:已经实现了一种基于两尺度电磁散射模型的模拟海面微波辐射测量和散射测量的统一方法。为了调整电磁正向模型以及嵌入式海面特征和波谱,已将模拟与经验导出的地球物理模型函数(GMF)进行了比较。比较涉及被动和主动情况下的大量风速,频率和观察角。两种广泛采用的文献光谱已用作基准。还开发了流体动力调制功能的新表达式。拟议的新频谱使我们能够很好地重现被动和主动GMF的行为,通常可以改善文献模型产生的一致性,尤其是对于散射测量模拟。

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