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Equations for the entire soil-water characteristic curve of a volume change soil

机译:体积变化土壤的整个土壤-水特征曲线的方程式

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摘要

Numerous curve-fitting equations have been proposed for soil-water characteristic curves. While these equations have been of considerable value in geotechnical and geoenvironmental engineering, the equations are not able to adequately fit gravimetric soil-water characteristic curve data over the entire range of soil suction for a soil that changes volume when suction is changed. Two new equations for the soil-water characteristic curve are presented in this paper. One equation has curve-fitting parameters that bear a meaningful relationship to conventional physical soil properties (e.g., air-entry value and residual soil suction), but the equation is somewhat complex. The equation is particularly useful for sensitivity type studies when undertaking computer modeling. The other equation is relatively simple to use and is developed as a conventional curve-fitting equation. The two equations are used to best-fit several soil datasets. Both equations perform well and can be used in research and engineering practice to define the gravimetric water content versus soil suction relationship for a soil exhibiting volume change.
机译:对于土壤-水特征曲线,提出了许多曲线拟合方程。尽管这些方程在岩土工程和地球环境工程中具有相当大的价值,但对于吸力变化时体积会变化的土壤,这些方程无法在土壤吸力的整个范围内充分拟合重力土壤水特征曲线数据。本文提出了两个新的土壤水特征曲线方程。一个方程具有曲线拟合参数,这些参数与常规的土壤物理特性(例如空气进入值和残留土壤吸力)具有有意义的关系,但该方程有些复杂。在进行计算机建模时,该方程式对于敏感度类型研究特别有用。另一个方程式使用起来相对简单,并且被开发为常规的曲线拟合方程式。这两个方程用于最佳拟合多个土壤数据集。这两个方程均表现良好,可用于研究和工程实践中,以定义重量变化较大的土壤的重量水含量与土壤吸力的关系。

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