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Derivation of Vegetation Optical Depth and Water Content in the Source Region of the Yellow River using the FY-3B Microwave Data

机译:使用FY-3B微波数据衍生黄河源区源区中的植被光学深度和含水量

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摘要

This study uses the brightness temperature at the given microwave frequency (18.7 GHz) from the Microwave Radiation Imager (MWRI) on-board the Fengyun-3B (FY-3B) satellite to improve the τ-ω model by considering the radiative contribution from waterbody in the pixels over the wetland of the Yellow River source region, China. In order to retrieve vegetation optical depth (VOD), a dual-polarization slope parameter is defined to express the surface emissivity in the τ-ω model as the sum of soil emissivity and waterbody emissivity. In the regions with no waterbody, the original τ-ω model without considering waterbody impact is used to derive VOD. With use of the field observed vegetation water content (VWC) in the source region of the Yellow River during the summer of 2012, a regression relationship between VOD and VWC is established and then the vegetation parameter b is estimated. The relationship is employed to derive the spatial VWC during the entire vegetation growing period. The VOD retrieved is invalid and failed in some part of the study area by using the previous τ-ω model, while the results from the improved τ-ω model indicate that the VOD is in the range of 0.20 to 1.20 and the VWC is in the range of 0.20kg/m2 to 1.40kg/m2 in the entire source region of the Yellow River in 2012. Both VOD and VWC exhibit a pattern of low values in the west part and high values in the east part. The largest regional variations appear along the Yellow River. The comparison between the remote-sensing-estimated VWC and the ground-measured VWC gives the root mean square error of 0.12kg/m2. These assessments reveal that with considering the fractional seasonal wetlands in the source region of the Yellow River, the microwave remote sensing measurements from the FY-3B MWRI can be successfully used to retrieve the VWC in the source region of the Yellow River.
机译:本研究使用给定微波频率(18.7GHz)的亮度温度从微波辐射成像仪(MWRI)在板上的Fengyun-3b(FY-3B)卫星通过考虑水体的辐射贡献来改善τ-ω模型在中国黄河源区湿地的像素中。为了检索植被光学深度(VOD),定义双偏振斜率参数以表达τ-ω模型中的表面发射率作为土壤发射率和水体发射率的总和。在没有水体的区域中,原始τ-ω模型不考虑水体撞击的模型用于派生VOD。在2012年夏天,在黄河源区中使用田间观察到的植被水含量(VWC),建立了VOD和VWC之间的回归关系,然后估计植被参数B.在整个植被生长期间,使用该关系来得出空间VWC。检索的VOD在研究区域的某些部分中使用先前的τ-ω模型失败,而改进的τ-ω模型的结果表明VOD在0.20至1.20的范围内,并且VWC处于2012年黄河整个源区的0.20kg / m2至1.40kg / m 2的范围。vod和vwc两者和vwc都表现出西部的低值和东部高值。最大的区域变异沿着黄河出现。遥感估计的VWC与地面测量VWC之间的比较给出了0.12kg / m2的根均方误差。这些评估表明,考虑到黄河源区的分数季节湿地,FY-3B MWRI的微波遥感测量可以成功地用于检索黄河源区的VWC。

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