论文标题

地震 - 露天线引起的弯曲曲线的数值评估

Numerical Evaluation of Fragility Curves for Earthquake-Liquefaction-Induced Settlements of an Embankment

论文作者

Khalil, Christina, Rapti, Ioanna, Lopez-caballero, Fernando

论文摘要

地震损坏的主要原因是诱导地面变形的土壤基础的液化。众所周知,当土壤由于孔隙水压过大而失去其剪切强度时,液化出现。这种现象导致土壤基础的几次灾难性损害。本文的目的是从数值上评估液化引起的土壤基础对土壤基础的沉降在路堤上的影响,这是由于从同伴数据库中提取的76次真正的地震。为此,考虑了建立在分层土壤/岩石剖面上的水坝的2D有限元模型。使用弹性塑性多机械模型来表示土壤行为。选择了路堤的峰顶沉降作为研究的可量化损伤变量。绘制脆性函数,以超过某些提出的损伤水平,这是地震严重性参数的功能。另外,通过土壤渗透率的变化进行了各向异性,并与各向同性进行了比较。根据结果​​,波峰定居点随着峰值地面加速度的增加而增加,脆弱函数表明,高于0.2g的脆弱性,在各向异性情况下造成中等损害的概率达到统一性,而在各向同性情况下的可能性较小。在两种情况下,路堤不会显示出相同的加速度值的严重破坏。

The major cause of earthquake damage to an embankment is the liquefaction of the soil foundation that induces ground level deformations. It is well known that the liquefaction appears when the soil loses its shear strength due to the excess of pore water pressure. This phenomenon leads to several disastrous damages of the soil foundation. The aim of this paper is to assess numerically the effect of the liquefaction-induced settlement of the soil foundation on an embankment due to 76 real earthquakes extracted from the PEER database. For this purpose, a 2D finite element model of a dam founded on a layered soil/rock profile was considered. An elastoplastic multi-mechanism model was used to represent the soil behaviour. The crest settlement of the embankment was selected as the quantifiable damage variable of the study. Fragility functions were drawn to give the probability exceedance of some proposed damage levels as function of a seismic severity parameter. In addition, the anisotropy was tested by the change in the soil permeability and a comparison with the isotropy was held. According to the results, the crest settlement increases with the peak ground acceleration and the fragility functions showed that above 0.2g, the probability to have moderate damage in the anisotropic case reaches unity whereas it is lesser in the isotropic case. The embankment will not show serious damage for this same value of acceleration in the two cases.

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