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Rigid block modelling of historic masonry structures using mathematical programming: a unified formulation for non-linear time history, static pushover and limit equilibrium analysis

机译:数学规划历史砌体结构的刚性块建模:非线性时间历史,静态推进和限制平衡分析的统一配方

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摘要

A unified formulation is presented for non-linear time history, static pushover and limit analysis of historic masonry structures modelled as 2D assemblages of rigid blocks interacting at no-tension, frictional contact interfaces. The dynamic, incremental static and limit analysis problems are formulated as mathematical programming problems which are equivalent to the equations system governing equilibrium, kinematics and contact failure. Available algorithms from the field of mathematical programming, contact dynamics and limit analysis are used to tackle the contact problems between rigid blocks in a unified framework. To evaluate the accuracy and computational efficiency of the implemented formulation, applications to numerical case studies from the literature are presented. The case studies comprise rigid blocks under earthquake excitation, varying lateral static loads and sliding motion. A set of two leaves wall panels and an arch-pillars system are also analysed to compare failure mechanisms, displacement capacity and magnitudes of lateral loads promoting the collapse.
机译:统一的制剂用于非线性时间历史,历史砌体结构的静态推送和极限分析,其模型为2D刚性块的2D组件,摩擦接触接口相互作用。动态,增量静态和极限分析问题被制定为数学编程问题,其等同于管理均衡,运动学和接触失败的方程系统。来自数学编程领域的可用算法,联系动力学和限制分析用于在统一框架中解决刚性块之间的联系问题。为了评估实施的制剂的准确性和计算效率,提出了对文献的数值案例研究的应用。案例研究包括在地震激励下的刚性块,改变横向静载荷和滑动运动。还分析了一组两个叶子壁板和拱形支柱系统以比较促进崩溃的横向载荷的失效机制,位移能力和大小。

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