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Static liquefaction and effective stress path response of Kutch soils

机译:静电土壤的静态液化和有效应力路径响应

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The current research is focused on the static liquefaction and effective stress path characteristics of soils of the high seismicity Kutch region, India. In previous studies, the effects of the fines content and the plasticity of the fines on the undrained behavior were explored in a controlled and systematic manner with either non-plastic or plastic fines added to standard or river sands. The undrained characteristics of natural soil deposits having the simultaneous presence of both silt and clay fractions have not been explored. In the present study, the effects of a varying fines content and the nature of the fines on the static liquefaction and effective stress path characteristics of various soil deposits in the Kutch region at their in-situ densities have been studied. Various liquefaction indices were determined to quantify the static liquefaction, namely, the undrained brittleness index, the collapse potential, the liquefaction potential, and the resistance to further deformation. The variation in these parameters was analyzed in the context of the fines content, silt content, clay content, and plasticity. The effective stress paths of the Kutch soils exhibited a strain softening, limited strain softening or strain hardening response and their behavior was controlled by the fines content and its nature. Due to the presence of non-plastic fines, and irrespective of the content, the silty sands exhibited intense strain softening which was captured by the liquefaction indices. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:目前的研究专注于印度高地震性kutch区土壤的静液化和有效应力路径特征。在先前的研究中,以控制和系统的方式探讨了粉末含量和细粒对不介绍行为的可塑性的影响,并以标准或河流添加到标准或河砂中的非塑料或塑料细粉。尚未探讨同时存在淤泥和粘土分数的天然土壤沉积物的不驱染特征。在本研究中,已经研究了改变粉末含量的影响和对其原位密度的静态液化和静脉区域中各种土壤沉积物的有效应力路径特性的影响。确定各种液化指数以量化静态液化,即未染色的脆性指数,塌陷电位,液化电位以及耐进一步变形的抵抗力。在细粒含量,淤泥含量,粘土含量和可塑性的背景下分析这些参数的变化。 Kutch土壤的有效应力路径表现出菌株软化,有限的菌株软化或应变硬化反应,其行为由细粉含量及其性质控制。由于存在非塑料细粉,而不管含量如何,粉状砂表现出强烈的菌株软化,液化指数捕获。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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