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首页> 外文期刊>Hydrology and Earth System Sciences >Validation of SMAP L2 passive-only soil moisture products using upscaled in situ measurements collected in Twente, the Netherlands
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Validation of SMAP L2 passive-only soil moisture products using upscaled in situ measurements collected in Twente, the Netherlands

机译:验证在荷兰特特·特内特的原位测量中使用Umpalded验证Smap L2唯一的土壤水分产品

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The Twente region in the east of the Netherlands has a network with 20 soil monitoring stations that has been utilized for validation of the Soil Moisture Active/Passive (SMAP) passive-only soil moisture products. Over the period from April 2015 until December 2018, seven stations covered by the SMAP reference pixels have fairly complete data records. Spatially distributed soil moisture simulations with the Dutch National Hydrological Model have been utilized for the development of upscaling functions to translate the spatial mean of point measurements to the domain of the SMAP reference pixels. The native and upscaled spatial soil moisture means computed using the in situ measurements have been adopted as references to assess the performance of the SMAP (i) Single Channel Algorithm at Horizontal Polarization (SCA-H), (ii) Single Channel Algorithm at Vertical Polarization (SCA-V), and (iii) Dual Channel Algorithm (DCA) soil moisture estimates. In the case of the Twente network it was found that the SCA-V SMAP soil moisture observations collected in the afternoon had the best agreement with the native spatial mean, leading to an unbiased root mean squared error (uRMSE) of 0.059?m 3 ?m ?3 , whereas for the upscaled in situ references primarily larger biases were found. These error levels are larger than the mission's target accuracy of 0.04?m 3 ?m ?3 , which can be attributed to large over- and under-estimation errors ( 0.08 ?m 3 ?m ?3 ), in particular at the end of dry spells and during freezing, respectively. The strong vertical dielectric gradients associated with rapid soil freezing and wetting cause the disparity in soil depth characterized by SMAP and in situ that leads to the large mismatches. Once filtered for frozen conditions and antecedent rainfall, the uRMSE improves to 0.043?m 3 ?m ?3 .
机译:荷兰东部的Twente地区拥有一个具有20个土壤监测站的网络,已用于验证土壤湿度(Smap)无源土壤水分产品的验证。在2015年4月至2018年12月的此期间,SMAP参考像素涵盖的七个站具有相当完整的数据记录。具有荷兰国家水文模型的空间分布式土壤湿度模拟用于开发上升函数,将点测量的空间均值转化为SMAP参考像素的域。使用原位测量计算的本机和上部空间土壤湿度装置作为评估SMAP(I)单通道算法在垂直极化下的水平极化(SCA-H),(ii)单通道算法的SMAP(I)单信道算法的性能(SCA-V)和(III)双通道算法(DCA)土壤水分估算。在二十型网络的情况下,发现下午收集的SCA-V SMAP土壤水分观察与原生空间平均值的最佳协议,导致0.059?M 3的无偏均平均平均误差(urmse)? M?3,而对于原位参考的升高,发现主要是更大的偏差。这些误差水平大于任务的目标精度为0.04?m 3?m?3,其可归因于估计误差和估计误差(&0.08≤m3≤m≤3),特别是在干法术和冻结期间的结束。与快速土壤冷冻和润湿相关的强的垂直介电梯度导致土壤深度的差异,其特征在于芯片,其原位导致大的不匹配。一旦过滤冻结条件和前进的降雨,瓮改善为0.043?M 3?M?3。

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