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Physical retrieval of tropical ocean surface wind speed under rain-free conditions using spaceborne microwave radiometers

机译:使用星载微波辐射计对无雨条件下的热带海洋表面风速进行物理检索

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摘要

This research proposes a physical algorithm for retrieving sea surface wind speed using a combination of passive microwave satellite observations and simulations, namely Advanced Microwave Scanning Radiometer (AMSR-E) observations for vertical polarization, and a simulation based on the fast Radiative Transfer for TOVS with Global Data Assimilation System data for horizontal polarizations. A regression relationship between sea surface roughness and sea surface wind speed was derived using the Hong approximation and polarization ratio near Brewster's angle. The sea surface wind speed algorithm was assessed using the AMSR-E data. Comparing sea surface wind speed from the proposed algorithm using AMSR-E 6.925, 10.65, and 18.7 GHz data with Tropical Atmospheric Ocean (TAO) data from 1 January 2010 to 31 December 2010 shows that the estimated bias and root mean square error (RMSE) were -0.126 and 1.191ms(-1), -0.094 and 1.152ms(-1), and -0.085 and 1.338ms(-1), respectively. The current official AMSR-E sea surface wind speed shows the bias and RMSE were -0.614 and 1.330ms(-1), respectively, when compared with TAO buoy observations, which was similar to those of the proposed algorithm using AMSR-E 18.7 GHz. This study provides a useful sea surface wind speed retrieval algorithm with high accuracy on the sea surface, which can be applied to a variety of spaceborne passive microwave radiometers.
机译:这项研究提出了一种结合被动微波卫星观测和模拟(即用于垂直极化的高级微波扫描辐射计(AMSR-E)观测)和基于TOVS的快速辐射转移的模拟来检索海面风速的物理算法。用于水平极化的全局数据同化系统数据。利用洪氏近似和布鲁斯特角附近的极化比,推导出海面粗糙度与海面风速之间的回归关系。使用AMSR-E数据评估了海面风速算法。将使用AMSR-E 6.925、10.65和18.7 GHz数据的拟议算法与2010年1月1日至2010年12月31日的热带大气(TAO)数据的海面风速进行比较,发现估算的偏差和均方根误差(RMSE)分别为-0.126和1.191ms(-1),-0.094和1.152ms(-1),以及-0.085和1.338ms(-1)。当前的官方AMSR-E海面风速显示,与TAO浮标观察相比,偏差和RMSE分别为-0.614和1.330ms(-1),这与使用AMSR-E 18.7 GHz提出的算法相似。这项研究提供了一种有用的,具有高精度的海面风速检索算法,可以应用于各种星载无源微波辐射计。

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  • 来源
    《Remote sensing letters》 |2015年第6期|380-389|共10页
  • 作者单位

    Sejong Univ, Dept Environm Energy & Geoinfomat, Seoul, South Korea;

    Korea Meteorol Adm, Natl Meteorol Satellite Ctr, Jincheon Gun, Chungcheongbuk, South Korea;

    Korea Meteorol Adm, Natl Meteorol Satellite Ctr, Jincheon Gun, Chungcheongbuk, South Korea;

    Korea Meteorol Adm, Natl Meteorol Satellite Ctr, Jincheon Gun, Chungcheongbuk, South Korea;

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