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首页> 外文期刊>Computers & Structures >Damage identification using inverse analysis for 3D coupled thermo- hydro-mechanical problems
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Damage identification using inverse analysis for 3D coupled thermo- hydro-mechanical problems

机译:使用逆分析的3D耦合热液力机械问题损伤识别

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摘要

In this paper, location and degree of damages in massive masonry structures are identified by a multi field based inverse analysis which relies on a series of measurements such as transient displacements, temperatures and water pressures. As it is typical for the multi-field problems, the existence of damage leads to local changes in parameters of the different physical fields. The degree of the damage is defined by one primary variable, from which other quantities are derived. For fluid-flow problems in deformable porous media under non-isothermal boundary conditions such a quantity is the porosity of the material. The inverse analysis bases on a global search method, in which a dual-level parallel-computation is applied to improve computational cost. The effects of uncertainties in measurements and the size of the damage on the accuracy of the solutions are also discussed in the paper. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,通过基于多领域的反分析来确定大型砖石结构中损坏的位置和程度,该反分析依赖于一系列测量值,例如瞬时位移,温度和水压。由于通常是多场问题,因此损坏的存在会导致不同物理场参数的局部变化。损坏程度由一个主要变量定义,其他变量可从该主要变量中得出。对于在非等温边界条件下可变形多孔介质中的流体流动问题,该数量就是材料的孔隙率。反分析基于全局搜索方法,其中应用了双层并行计算以提高计算成本。本文还讨论了测量不确定性和损伤大小对解决方案准确性的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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