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Linking Surface Temperature Based Approaches for Estimating Soil Heat Flux with Error Propagation

机译:链接基于表面温度的土壤热通量与误差传播估计方法

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摘要

Soil heat flux is an inseparable component of the surface energy balance. Accurate estimation of regional soil heat flux is valuable to studies of meteorology and hydrology. Conventional measurement of using soil heat flux plates at the site scale is impractical to estimate large-scale flux. Other approaches generally require soil temperature to?be measured in at least two soil layers, which is also difficult to implement at the regional scale. In the last decade, single-layer based approaches were developed to fulfill the regional requirement. This study used a simple but more general approach for estimating soil heat flux solely with surface temperature. The generalized approach can be conditionally linked to two existing single-layer based approaches but has fewer restrictions or assumptions. Error analysis revealed that measurement error in surface temperature would have limited effects on soil heat flux estimated from the new approach. Model simulations showed that soil heat flux estimated from the approach agreed with those simulated from the heat transfer equation. Furthermore, case examinations at two sites with contrasting climate regimes demonstrated that the generalized approach had better performance than the existing single-layer approaches. It achieved the highest correlation of determination and the lowest mean, standard deviation, and root mean squared error of the differences between the estimates and the field measures at either site. The generalized approach can estimate soil heat flux at a depth but it requires only surface temperature data as input, which is an advantage to remote sensing applications.
机译:土壤热通量是表面能平衡不可分割的组成部分。准确估算区域土壤热通量对气象水文学研究具有重要意义。在场地规模上使用土壤热通量板进行常规测量无法估算大规模通量。其他方法通常要求至少在两个土壤层中测量土壤温度,这在区域范围内也很难实施。在过去的十年中,开发了基于单层的方法来满足区域要求。这项研究使用一种简单但更通用的方法来仅凭表面温度估算土壤热通量。通用方法可以有条件地链接到两个现有的基于单层的方法,但是具有较少的限制或假设。误差分析表明,表面温度的测量误差对通过新方法估算的土壤热通量的影响有限。模型仿真表明,通过该方法估算的土壤热通量与通过传热方程模拟的热通量一致。此外,在两个具有不同气候制度的地点进行的案例检查表明,与现有的单层方法相比,广义方法具有更好的性能。它获得了最高的测定相关性,并且在任一地点的估计值与现场测量值之间的差异的最低均值,标准差和均方根误差最小。通用方法可以估计某个深度处的土壤热通量,但仅需要将表面温度数据作为输入,这对遥感应用程序来说是一个优势。

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