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首页> 外文期刊>International journal of architectural heritage >Numerical Approach to Model the Effect of Moisture in Adobe Masonry Walls Subjected to In-Plane Loading
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Numerical Approach to Model the Effect of Moisture in Adobe Masonry Walls Subjected to In-Plane Loading

机译:平面荷载作用下Adobe砌体墙中水分影响建模的数值方法

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摘要

This article proposes a numerical modeling approach to account for the weakening effect of moisture on the in-plane (lateral) resistance of adobe masonry walls. The approach uses a variable that links the water content of the soil to its strength properties, with varying locations of a moist region in the wall (i.e., length across the wall). A nonlinear, isotropic finite element model was used to study adobe walls at the macro scale. The adequacy of the proposed approach was examined numerically through finite element (FE) analysis for I-shaped adobe walls with varying length and water content of a moist region along the base. The analysis showed that the lateral strength of adobe walls, defined as the maximum force required to cause a given displacement, may drop considerably (up to about 40% for the cases considered) depending on the length, location, and water content of the moist (weakened) region of the wall.
机译:本文提出了一种数值模拟方法,以解决水分对土坯砌体墙的面内(横向)阻力的削弱作用。该方法使用了一个变量,该变量将土壤的水分含量与其强度特性联系在一起,并且壁中潮湿区域的位置(即,壁的长度)有所变化。非线性的各向同性有限元模型被用于宏观研究土坯墙。通过有限元(FE)分析,对具有不同长度和沿基部潮湿区域的水含量的I形土坯墙进行了数值研究,验证了所提出方法的适当性。分析表明,土坯墙的侧向强度(定义为引起给定位移所需的最大力)可能会显着下降(对于所考虑的情况,最多下降40%),具体取决于潮湿的长度,位置和含水量墙的(弱化)区域。

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