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Mitigation of seismic settlement of light surface structures by installation of sheet-pile walls around the foundation

机译:通过在基础周围安装板桩墙来减轻轻型表面结构的地震沉降

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摘要

Settlement of surface structures, which is particularly a private house, due to subsoil liquefaction is not a, new issue in geotechnical engineering. It has been happening during earthquakes in liquefaction-prone areas since many years ago. However, to date no reliable measure against this problem with reasonable cost has been proposed to people. In this paper, results of a series of 1-g shaking table tests which have been conducted to evaluate performance of a possible mitigation against this problem are presented. The proposed mitigation herein is installation of sheet-pile walls around the foundation. In order to reduce the cost of mitigation, sheet-piling with gap and half-length sheet-piling were examined. The experiments were conducted in different ground water levels. It is found out that installing sheet-pile walls in relatively low ground water level can stop settlement of structures completely. Sheet-piling with gaps delays initiation of settlement but it may increase the ultimate settlement of structure. In addition, it is found that formation of a water film under the building's foundation is the governing mechanism of post-shaking settlement of structures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于地下土液化,地表结构(尤其是私人房屋)的沉降不是岩土工程中的新问题。自多年前以来,地震就发生在容易液化的地区。然而,迄今为止,尚未向人们提出以合理的成本来解决该问题的可靠措施。在本文中,介绍了一系列1-g振动台测试的结果,这些测试已进行评估以缓解该问题的性能。本文提出的缓解措施是在基础周围安装板桩墙。为了降低缓解成本,研究了带间隙的纸堆和半长纸堆。实验是在不同的地下水位下进行的。发现在相对较低的地下水位中安装板桩墙可以完全停止建筑物的沉降。有缝隙的板桩会延迟沉降的开始,但可能会增加结构的最终沉降。此外,还发现建筑物基础下的水膜形成是建筑物振动后沉降的控制机制。 (C)2015 Elsevier Ltd.保留所有权利。

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