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Hydraulic Properties of Unsaturated Soils: A NovelProcedure

机译:非饱和土的水力特性:一种新方法

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Buildings built on shrink-swelling soils may experience serious damage due to volumetric strains. These strains are produced by drying-wetting cycles generated when water content fluctuates in the mass of soil. In order to study this behavior, theoretical models taking into account the soil-water retention curve have been developed. The retention curve is used to indirectly estimate some parameters describing the hydraulic behavior of soils, as for example the hydraulic conductivity and the diffusion coefficient. The precision of indirect methods to determine the hydraulic parameters depends largely on the accuracy of the experimental points of the soil-water retention curve and the equations used to simulate this curve. However, it is possible to skip the second step and simply use the experimental data of the characteristic curve to obtain these parameters. Therefore, a procedure based on an interpolation method with variable increments is proposed. This procedure generates a polynomial equation for the retention curve which simplifies the method and avoids errors caused by the fitting process of the theoretical with the experimental retention curve. In addition, no fitting parameters are required with this procedure. The results obtained with this method are similar to those reported by the traditional indirect methods.
机译:在膨胀膨胀土壤上建造的建筑物可能会由于体积应变而遭受严重破坏。这些菌株是由水分在土壤团块中波动而产生的干湿循环产生的。为了研究这种行为,已经建立了考虑土壤水分保留曲线的理论模型。保留曲线用于间接估计一些描述土壤水力行为的参数,例如水力传导率和扩散系数。确定水力参数的间接方法的精度在很大程度上取决于土壤保水曲线的实验点的精度以及用于模拟该曲线的方程式。但是,可以跳过第二步,仅使用特性曲线的实验数据即可获得这些参数。因此,提出了一种基于具有可变增量的插值方法的过程。此过程为保留曲线生成了多项式方程,简化了方法,避免了由于理论与实验保留曲线拟合过程而引起的误差。此外,此过程不需要拟合参数。用这种方法获得的结果与传统间接方法报道的结果相似。

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