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Parametric soil water retention models: a critical evaluation of expressions for the full moisture range

机译:参数化的土壤保水模型:对整个湿度范围内的表达式进行严格评估

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Few parametric expressions for the soil water retention curve are suitable for dry conditions. Furthermore, expressions for the soil hydraulic conductivity curves associated with parametric retention functions can behave unrealistically near saturation. We developed a general criterion for water retention parameterizations that ensures physically plausible conductivity curves. Only 3 of the 18 tested parameterizations met this criterion without restrictions on the parameters of a popular conductivity curve parameterization. A fourth required one parameter to be fixed. brbr We estimated parameters by shuffled complex evolution (SCE) with the objective function tailored to various observation methods used to obtain retention curve data. We fitted the four parameterizations with physically plausible conductivities as well as the most widely used parameterization. The performance of the resulting 12 combinations of retention and conductivity curves was assessed in a numerical study with 751?days of semiarid atmospheric forcing applied to unvegetated, uniform, 1?m freely draining columns for four textures. brbr Choosing different parameterizations had a minor effect on evaporation, but cumulative bottom fluxes varied by up to an order of magnitude between them. This highlights the need for a careful selection of the soil hydraulic parameterization that ideally does not only rely on goodness of fit to static soil water retention data but also on hydraulic conductivity measurements. brbr Parameter fits for 21 soils showed that extrapolations into the dry range of the retention curve often became physically more realistic when the parameterization had a logarithmic dry branch, particularly in fine-textured soils where high residual water contents would otherwise be fitted.
机译:土壤保水曲线的参数表达很少适用于干燥条件。此外,与参数保留函数关联的土壤水力传导率曲线的表达式在接近饱和时可能会不切实际地表现。我们为保水参数化制定了通用标准,以确保物理上合理的电导率曲线。在18个测试的参数化中,只有3个满足此标准,而不受流行的电导率曲线参数化参数的限制。第四位需要固定一个参数。 我们通过改组复杂演化(SCE)估算了参数,并针对各种用于获得保留曲线数据的观察方法量身定制了目标函数。我们为这四个参数化设置了物理上合理的电导率,以及使用最广泛的参数化设置。在数值研究中评估了得到的12种保留和电导率曲线组合的性能,对无植被,均匀,1?m的自由排水柱应用751?s半干旱大气强迫,获得了四种纹理。 选择不同的参数化对蒸发的影响较小,但累积的底部通量在它们之间的变化幅度最大。这突出了需要仔细选择土壤水力参数化的需求,理想情况下,土壤水力参数化不仅理想地取决于对静态土壤水分保持数据的拟合优度,而且还取决于水力传导率测量。 对21种土壤的参数拟合表明,当参数化具有对数干分支时,对保留曲线干燥范围的外推在物理上通常变得更加现实,尤其是在细结构的土壤中,否则残留水分会很高装。

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