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Estimation of the water retention curve for unsaturated clay

机译:不饱和黏土保水曲线的估算

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Mir Mohammad Hosseini, S. M., Ganjian, N. and Pashang Pisheh, Y. 2011. Estimation of the water retention curve for unsaturated clay. Can. J. Soil Sci. 91: 543-549. Extensive laboratory tests are essential in order to determine the soil water retention curve, defined as the relationship between water content and suction, in an unsaturated soil. These laboratory tests are usually costly and time consuming. Moreover, for most practical problems, it has been found that approximate unsaturated soil properties are adequate for analysis. Thus, empirical procedures for predicting unsaturated soil parameters would be invaluable: The water retention curve can be estimated using soil properties to avoid the costs of experimental methods. Estimation of the water retention curve based on index properties is highly desirable due to its simplicity and low cost. Here, a model for the estimation of the soil water retention curve for fine soils is introduced, which takes the plasticity index and fine content into account, and is based on the Van Genuchten and Fredlund-Xing equations. The proposed equations are validated by comparing measured and simulated results. The curves predicted with these models were found to be in good agreement with the experimental results
机译:Mir Mohammad Hosseini,S. M.,Ganjian,N.和Pashang Pisheh,Y.2011。不饱和粘土保水曲线的估算。能够。 J.土壤科学。 91:543-549。为了确定在非饱和土壤中的土壤保水曲线(定义为水含量与吸力之间的关系),必须进行广泛的实验室测试。这些实验室测试通常是昂贵且费时的。此外,对于大多数实际问题,已经发现近似的非饱和土壤性质足以进行分析。因此,用于预测非饱和土壤参数的经验方法将是无价的:可以利用土壤性质估算保水曲线,从而避免实验方法的成本。由于其简单性和低成本,非常需要基于指数性质的保水曲线的估计。在此,基于Van Genuchten和Fredlund-Xing方程,引入了一种估算细土的土壤保水曲线的模型,该模型考虑了可塑性指数和细土含量。通过比较测量结果和仿真结果验证了所提出的方程。发现这些模型预测的曲线与实验结果非常吻合

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