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Bearing capacity of circular footing resting on granular soil overlying soft clay

机译:圆形地基承载在软土上的粒状土上的承载力

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摘要

The bearing capacity of footings constructed on soft clay soil is considerably governed by soil settlement. In practice, the bearing capacity of foundations on soft clay can be improved by a layer of compacted sand or gravel. In this study numerical analysis is performed using the Mohr Column model and some of the results are ensured by field plate loading observations. It is demonstrated that the ultimate bearing capacity is directly proportional to the angle of internal friction of granular soil “ ? ”, the granular layer thickness “ H ”, and the foundation depth “ D ”, while at the same time it is inversely proportional to the footing diameter “ B ”. The ultimate capacity of surface footings ( D / B = 0 and H/B 2) increases about 67% if the granular soil changes from medium to very dense. A significant enhancement in bearing capacity is achieved by increasing the ratio between the granular soil thickness and the footing diameter “ H/B ” up to four for surface foundations ( D/B = 0) and up to six for deeper foundations ( D/B = 1.0). The failure mechanism is characterized by punch shear failure in the granular soil and Prandtl 1 failure in the lower soft clay soil. The ultimate bearing capacity is also directly proportional to the extension “ x ” of granular soil measured from the footing edge up to a ratio equal to one ( x/B = 1).
机译:在软粘土上建造的地基的承载力在很大程度上取决于土壤沉降。在实践中,可以通过压实的沙子或砾石层来提高软土上的地基承载力。在这项研究中,使用莫尔柱模型进行了数值分析,并且通过现场板载荷观测确保了某些结果。结果表明,极限承载力与粒状土的内摩擦角成正比。 ”,颗粒层厚度“ H”和基础深度“ D”,而同时与基础直径“ B”成反比。如果粒状土壤从中度变为非常稠密,则表面基础的最终能力(D / B = 0且H / B> 2)增加约67%。通过将颗粒状土壤厚度与基础直径“ H / B”之比提高到表面基础(D / B = 0)最多四个,深层基础(D / B)最多六个,可以显着提高承载力= 1.0)。破坏机理的特征是颗粒状土壤的冲剪破坏和下部软粘土的Prandtl 1破坏。极限承载力也直接与从基脚边缘到比例等于1(x / B = 1)的颗粒状土壤的延伸“ x”成正比。

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