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Comparison of Geophysical Model Functions for SAR Wind Speed Retrieval in Japanese Coastal Waters

机译:日本沿海水域SAR风速反演的地球物理模型功能比较

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This work discusses the accuracies of geophysical model functions (GMFs) for retrieval of sea surface wind speed from satellite-borne Synthetic Aperture Radar (SAR) images in Japanese coastal waters characterized by short fetches and variable atmospheric stability conditions. In situ observations from two validation sites, Hiratsuka and Shirahama, are used for comparison of the retrieved sea surface wind speeds using CMOD (C-band model)4, CMOD_IFR2, CMOD5 and CMOD5.N. Of all the geophysical model functions (GMFs), the latest C-band GMF, CMOD5.N, has the smallest bias and root mean square error at both sites. All of the GMFs exhibit a negative bias in the retrieved wind speed. In order to understand the reason for this bias, all SAR-retrieved wind speeds are separated into two categories: onshore wind (blowing from sea to land) and offshore wind (blowing from land to sea). Only offshore winds were found to exhibit the large negative bias, and short fetches from the coastline may be a possible reason for this. Moreover, it is clarified that in both the unstable and stable conditions, CMOD5.N has atmospheric stability effectiveness, and can keep the same accuracy with CMOD5 in the neutral condition. In short, at the moment, CMOD5.N is thought to be the most promising GMF for the SAR wind speed retrieval with the atmospheric stability correction in Japanese coastal waters, although there is ample room for future improvement for the effect from short fetch.
机译:这项工作讨论了地球物理模型函数(GMF)的精度,该精度可从日本沿海水域的卫星传播的合成孔径雷达(SAR)图像中检索海面风速,这些特征具有短时获取和可变的大气稳定性条件。来自两个验证站点平冢和白滨的实地观测数据用于比较使用CMOD(C波段模型)4,CMOD_IFR2,CMOD5和CMOD5.N的海面风速。在所有地球物理模型函数(GMF)中,最新的C波段GMF CMOD5.N在两个站点上具有最小的偏差和均方根误差。所有GMF都对检索到的风速表现出负偏差。为了理解产生这种偏差的原因,将所有SAR搜索到的风速分为两类:陆上风(从海向陆地吹气)和海上风(从海向海吹气)。仅发现海上风表现出较大的负偏差,而从海岸线上短暂取水可能是造成这种情况的原因。此外,可以清楚地看出,在不稳定和稳定条件下,CMOD5.N均具有大气稳定性,在中性条件下可以保持与CMOD5相同的精度。简而言之,目前,CMOD5.N被认为是在日本沿海水域进行大气稳定性校正的SAR风速反演中最有前途的GMF,尽管短期取水的效果还有很大的改进空间。

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