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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >An exact solution for three-dimensional (3D) dynamic response of a cylindrical lined tunnel in saturated soil to an internal blast load
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An exact solution for three-dimensional (3D) dynamic response of a cylindrical lined tunnel in saturated soil to an internal blast load

机译:饱和土中的圆柱形衬砌隧道对内部爆炸荷载的三维(3D)动力响应的精确解

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摘要

The dynamic response of tunnel under internal explosion in reality is a three dimensional geotechnical problem, however, it is often simplified as a plane strain problem in 2D model which can only deal with the dynamic responses of tunnel at the source of explosion. This note proposes a set of exact solutions for three-dimensional (3D) dynamic responses of a cylindrical lined tunnel in saturated soil due to internal blast loading are derived by using Fourier transform and Laplace transform. The surrounding soil is modeled as a saturated medium on the basis of Biot's theory and the lining structure modeled as an elastic medium. By utilizing a reliable and efficient numerical method of inverse Laplace transform and Fourier transform, the numerical solutions for the dynamic response of the lining and surrounding soil are obtained. The 3D dynamic responses of the lined tunnel and the surrounding saturated soil medium due to internal blast loading are then presented and discussed. The results demonstrate that the proposed solutions can help to evaluate the damage of the explosion to surrounding areas of the tunnel in 3D condition at any given elapsed time apart from the section at the source of explosion. (C) 2016 Elsevier. Ltd. All rights reserved.
机译:隧道内部爆炸时的动力响应实际上是一个三维岩土工程问题,但在二维模型中通常被简化为平面应变问题,只能处理爆炸源处的隧道动力响应。本文通过傅里叶变换和拉普拉斯变换,为饱和土中圆柱形衬砌隧道因内部爆炸载荷而产生的三维(3D)动力响应提出了一组精确解。根据Biot理论,将周围土壤建模为饱和介质,将衬砌结构建模为弹性介质。利用可靠,高效的拉普拉斯逆变换和傅里叶逆变换数值方法,得到了衬砌及周围土体动力响应的数值解。然后介绍并讨论了衬砌隧道和周围饱和土介质由于内部爆炸载荷而产生的3D动态响应。结果表明,所提出的解决方案可以帮助评估在任意给定的经过时间(爆炸源处的断面除外)下,在3D条件下爆炸对隧道周围区域的破坏。 (C)2016爱思唯尔。有限公司。保留所有权利。

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