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Unsaturated soil mechanics Critical review of physical foundations

机译:不饱和土壤力学对物理基础的批判性评论

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Most constitutive models for unsaturated soils are based on identification of soil-water suction with the capillary component of the matrix potential, ignoring the contribution of adsorption to this potential. Identification of potential (energy per unit volume) with stress (or suction), is questioned, since these quantities have different physical significance despite their common dimensions. It is suggested that the identification of matrix potential with (u_a - u_w) results from neglecting the adsorption potential, and adopting an unrealistic pore space model. This identification was probably motivated by the laboratory axis translation technique, but it is not valid under normal field conditions where the air pressure is usually atmospheric, and soil water cannot develop high tension without cavitating. Axis translation alters soil behavior by preventing cavitation, thus casting doubt on the relevance of laboratory results obtained from these tests to actual field conditions. Specifically, in soils having large specific surface areas, there is a range of conditions, relevant to geotechnical engineering, in which capillary potential appears to account for only a small part of matrix potential, the major contribution resulting from water adsorption onto the soil particles. Consideration of a double porosity model and cavitation of water under the tension generated by capillary mechanism appear indispensable for the interpretation of unsaturated soil behavior.
机译:对于非饱和土壤的大多数本构模型都是基于对具有基质电势的毛细成分的土壤水吸力的识别,而忽略了吸附对该电势的贡献。由于压力(或吸力)具有共同的尺寸,因此这些量具有不同的物理意义,因此对通过应力(或吸力)识别势能(每单位体积的能量)提出了质疑。建议用(u_a-u_w)来识别基质电势是由于忽略了吸附电势,并采用了不切实际的孔隙空间模型。这种识别可能是由实验室轴转换技术推动的,但是在正常的野外条件下无效,因为通常的野外条件是气压通常为大气压,并且土壤中的水不能空化而不能产生高张力。轴平移通过防止空化来改变土壤行为,从而使人们怀疑从这些测试获得的实验室结果与实际田间条件的相关性。具体地,在具有大的比表面积的土壤中,存在一系列与岩土工程有关的条件,其中毛细管电势似乎仅占基质电势的一小部分,主要的贡献是水吸附到土壤颗粒上。双重孔隙度模型的考虑和毛细作用机制产生的拉力作用下水的空化现象对于解释非饱和土的行为似乎是必不可少的。

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