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A soil moisture accounting-procedure with a Richards' equation-based soil texture-dependent parameterization.

机译:具有基于Richards方程的依赖于土壤质地的参数设置的土壤水分会计程序。

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摘要

Given a time-series of potential evapotranspiration and rainfall data, there are at least two approaches for estimating vertical percolation rates. One approach involves solving Richards' equation (RE) with a plant uptake model. An alternative approach involves applying a simple soil moisture accounting procedure (SMAP) based on a set of conceptual stores and conditional statements. It is often desirable to parameterize distributed vertical percolation models using regional soil texture maps. This can be achieved using pedotransfer functions when applying RE. However, robust soil texture based parameterizations for more simple SMAPs have not previously been available. This article presents a new SMAP designed to emulate the response of a one-dimensional homogenous RE model. Model parameters for 231 different soil textures are obtained by calibrating the SMAP model to 20 year time-series from equivalent RE model simulations. The results are then validated by comparing to an additional 13 years of simulated RE model data. The resulting work provides a new simple two parameter (% sand and % silt) SMAP, which provides consistent vertical percolation data as compared to RE based models. Results from the 231 numerical simulations are also found to be qualitatively consistent with intuitive ideas concerning soil texture and soil moisture dynamics. Vertical percolation rates are found to be highest in sandy soils. Sandy soils are found to provide less water for evapotranspiration. Surface runoff is found to be more important in soils with high clay content.
机译:给定一个潜在的蒸散量和降雨数据的时间序列,至少有两种方法可以估算垂直渗透率。一种方法涉及用植物吸收模型求解理查兹方程(RE)。一种替代方法涉及基于一组概念性存储和条件语句来应用简单的土壤湿度会计程序(SMAP)。通常希望使用区域土壤质地图参数化分布的垂直渗滤模型。这可以通过在应用RE时使用pedotransfer函数来实现。然而,以前没有针对更简单的SMAP的基于鲁棒土壤质地的参数化。本文提出了一种新的SMAP,旨在模拟一维均质RE模型的响应。通过将SMAP模型校准为20年时间序列(来自等效的RE模型模拟),可获得231种不同土壤质地的模型参数。然后,通过与另外13年的模拟RE模型数据进行比较来验证结果。结果工作提供了一个新的简单的两个参数(%砂和%粉砂)SMAP,与基于RE的模型相比,它提供了一致的垂直渗透数据。还发现231个数值模拟的结果在质量上与关于土壤质地和土壤水分动力学的直观想法一致。在沙质土壤中,垂直渗透率最高。发现沙质土壤为蒸散提供的水较少。在高粘土含量的土壤中发现地表径流更为重要。

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