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Scaling of surface soil moisture over heterogeneous fields subjected to a single rainfall event

机译:一次降雨事件下非均质田地表土壤水分的尺度变化

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Determining surface soil moisture evolution over a range of scales remains a challenge because of multiscale heterogeneity exhibited by soils. Measurement techniques are not in accordance with the scales at which information on soil moisture is needed. In situ point measurements are expensive and provide information only at a few select points. On the other hand, the spatial resolution of remote sensing data is too coarse for hydrologic applications. Currently, surface soil moisture evolution for heterogeneous fields subjected to rainfall conditions is achieved by a computationally intensive numerical solution of the Richards equation. To describe surface soil moisture evolution at local- and field-scale in an efficient manner, reference scaling curves are developed in this study based on a sharp front approximation and by adopting a log-normally distributed spatial hydraulic conductivity field. These scaling curves facilitate the determination of temporal evolution of surface soil moisture at any unmeasured location in the field, and can be used to obtain the field-scale surface soil moisture evolution for a single rainfall event. The scaling curves are computationally straight forward, and reduce the need for extensive soil moisture measurements at numerous locations in the field. Comparisons with experimental and numerical simulation results show that the proposed scaling curves hold promise for describing mean surface soil moisture evolution at the field-scale.
机译:由于土壤表现出多尺度的异质性,因此确定一系列尺度上的表层土壤水分演化仍然是一个挑战。测量技术与所需的土壤湿度信息的等级不一致。原位测量非常昂贵,并且仅在少数几个选择点提供信息。另一方面,遥感数据的空间分辨率对于水文学应用来说太粗糙了。当前,通过理查兹方程的计算密集型数值解可以实现降雨条件下非均质田地表土壤水分的演化。为了有效描述局部和田间地表土壤水分的演变,本研究基于锋利的前部近似并采用对数正态分布的空间水力传导率场,开发了参考比例曲线。这些缩放比例曲线有助于确定田间任何未测量位置处的地表土壤水分的时间演变,并可用于获取单个降雨事件的田间规模的地表土壤水分的演变。比例曲线在计算上是直接的,并减少了在田间许多位置进行大量土壤水分测量的需要。与实验和数值模拟结果的比较表明,提出的比例曲线对描述田间尺度的平均表层土壤水分演化具有希望。

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