A static limit analysis approach is proposed for assessing the collapse capacity of axisymmetric masonry domes subject to horizontal forces. The problem formulation is based on the sound theoretical framework provided by the classical statics of shells. After introducing the shell stress tensors on the dome mid-surface, integral equilibrium equations are enforced for its typical part. Heyman's assumptions of infinite compressive and vanishing tensile strengths are made, with cohesionless friction behavior governing the shear strength, to characterize the admissible stress states in the dome. An original computational strategy is developed to address the resulting static limit analysis problem, involving the introduction of a mesh on the dome mid-surface, the interpolation of the physical components of the shell stress tensors on the element boundaries, and the imposition of equilibrium and admissibility conditions respectively for the elements and at the nodes of the mesh. The descending discrete convex optimization problem is solved by standard and effective optimization tools, automatically providing collapse multiplier of horizontal forces, incipient collapse mechanism and expected crack pattern. Convergence analysis, validation with experimental results available in the literature, and parametric analyses with respect to geometric parameters and friction coefficient, are presented for spherical and ellipsoidal masonry domes, proving the reliability of the proposed approach for estimating the pseudo-static seismic resistance of masonry domes.
翻译:提议采用静态限值分析方法,评估受水平力制约的岩浆圆丘的崩溃能力; 问题拟订基于古典静态贝壳提供的完善的理论框架; 在对圆顶表面中表面引入贝壳应力加压器后,对其典型部分实施整体平衡方程式; 海曼对无限压缩和消失的抗拉强力的假设,同时对圆顶上可接受应力状态采取不凝固的摩擦行为; 制定最初的计算战略,以解决由此产生的静态限制分析问题,包括对圆顶中表面引入一个网格,对单元边界的贝应力加压器的物理组成部分进行内插,对元素和网格节点分别施加平衡和可接受条件; 使用标准和有效的优化工具,自动提供横向力的崩溃乘数、初始崩溃机制和预期的裂变模式,解决离散的优化问题; 协同分析,对文献中的实验结果进行校准,对元素边界的贝应进行模拟分析,对各项要素进行模拟地震测测测度参数和估测度分析; 模拟测测度测度测度测度的测度、测度测度测度测度和测度测度测度测度测度测度测度测度测度测度测度。