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Modeling the impacts of soil hydraulic properties on temporal stability of soil moisture under a semi-arid climate

机译:模拟半干旱气候下土壤水力特性对土壤水分时间稳定性的影响

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Despite the significant spatiotemporal variability of soil moisture, the phenomenon of temporal stability of soil moisture (TS SM) has been widely observed in field studies. However, the lack of understandings of the factors that control TS SM has led to some contradictory findings about TS SM. To resolve this issue, numerical models may offer an alternative way to complement field studies by quantifying different controls on TS SM. In this study, a 1-D vadose zone model was adopted to simulate daily soil moisture contents, which were used to compute the mean relative difference (MRD) and standard deviation of relative difference (SDRD) of soil moisture. Different from recent modeling studies, a soil dataset was employed with 200 samples of correlated soil hydraulic parameters for sandy soils. Compared to the results of previous modeling studies, more reasonable patterns of MRD and SDRD that resembled field observations were produced. By varying soil hydraulic parameter values, different patterns of MRD and SDRD could also be generated, implying variations in soil hydraulic properties could partly control the patterns of MRD and SDRD. More specifically, the residual soil moisture content (Or) was found to be the primary control on MRD, mainly due to the semi-arid climate that was simulated. By fixing 0,, however, a highly nonlinear relationship emerged between MRD and the shape factor n in the van Genuchten model, which resulted in the positively skewed distributions of MRD widely observed for sandy soils in field experiments. Moreover, both the range and skewness of the distributions of MRD were affected by the range of n. In addition, with increasing n, a positive correlation between MRD and the shape factor I in the van Genuchten model was also found. The simulation results suggested that the control of soil hydraulic properties on MRD might weaken for areas under bare surface conditions or for regions with more humid climates due to elevated soil moisture contents. Therefore, the impacts of soil hydraulic properties on TS SM may vary under different climate regimes. (C) 2014 Elsevier B.V. All rights reserved.
机译:尽管土壤水分的时空变化很大,但在田间研究中已广泛观察到土壤水分的时间稳定性(TS SM)现象。但是,由于缺乏对控制TS SM的因素的了解,导致了关于TS SM的一些矛盾发现。要解决此问题,数值模型可以通过量化TS SM上的不同控件来提供补充田野研究的替代方法。在本研究中,采用一维渗流带模型来模拟每日土壤含水量,用于计算土壤含水量的平均相对差(MRD)和相对差标准差(SDRD)。与最近的建模研究不同,土壤数据集使用了200个砂质土壤的相关土壤水力参数样本。与以前的建模研究结果相比,产生了类似于野外观测的更合理的MRD和SDRD模式。通过改变土壤水力参数值,也可以产生不同的MRD和SDRD模式,这意味着土壤水力特性的变化可以部分控制MRD和SDRD的模式。更具体地说,发现残留土壤水分(Or)是MRD的主要控制因素,这主要是由于模拟了半干旱气候。但是,通过固定为0,在van Genuchten模型中MRD与形状因子n之间出现了高度非线性关系,这导致在田间实验中广泛观察到沙土的MRD呈正偏分布。此外,MRD分布的范围和偏度都受n范围的影响。此外,随着n的增加,在van Genuchten模型中,MRD与形状因子I之间也呈正相关。模拟结果表明,由于土壤含水量增加,对于裸露地面条件或气候较潮湿的地区,MRD上土壤水力学特性的控制可能会减弱。因此,土壤水力特性对TS SM的影响在不同的气候制度下可能会有所不同。 (C)2014 Elsevier B.V.保留所有权利。

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