Modified expression for hydraulic conductivity according to Mualem–van Genuchten to allow proper computations at low‐pressure heads

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-09-07 DOI:10.1002/vzj2.20279
Marius Heinen
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Abstract

Water retention and hydraulic conductivity characteristics are key input data in studies on soil water dynamics in the vadose zone. The most well‐known analytical functions to describe these characteristics are those given by Mualem and van Genuchten, where van Genuchten showed that both can be described by a limited set of shared parameters. Analytically, there are no restrictions on the range of pressure heads for which these characteristics can be used. Experience, however, has shown that for certain sets of parameters, the hydraulic conductivity cannot be computed accurately at low‐pressure heads. This is due to the accuracy of (double precision) floating point operations in computer code. It is shown that for low‐pressure heads, the Mualem function approaches a power function. An adapted version of the Mualem–van Genuchten (MvG) expression for the hydraulic conductivity is proposed: between saturation and a soil‐dependent critical pressure head, the classical Mualem expression is valid and below this critical pressure head a power function is used. The power function is defined such that it matches the Mualem value at the critical pressure head. No accuracy problems will occur when using the power function until the result approaches the smallest possible (double precision) floating point value that significantly differs from zero.
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根据Mualem–van Genuchten修改的导水率表达式,以便在低压水头下进行正确计算
保水性和导水性是渗流带土壤水分动力学研究的关键输入数据。描述这些特征的最著名的分析函数是Mualem和van Genuchten给出的分析函数,其中van Genuchsten表明两者都可以用一组有限的共享参数来描述。从分析角度来看,可以使用这些特性的压头范围没有限制。然而,经验表明,对于某些参数组,无法在低压水头下准确计算水力传导率。这是由于计算机代码中(双精度)浮点运算的准确性。研究表明,对于低压水头,Mualem函数接近幂函数。提出了一种适用于导水率的Mualem–van Genuchten(MvG)表达式:在饱和和土壤相关临界压头之间,经典Mualem表达式是有效的,在该临界压头以下使用幂函数。功率函数的定义使其与临界压头处的Mualem值相匹配。使用幂函数时不会出现精度问题,直到结果接近与零显著不同的最小可能(双精度)浮点值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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