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Implementation Verification and Validation of 3D Structural Elements in a Numerical Tool for Nonlinear SSI Seismic Analysis

机译:非线性SSI地震分析数值工具中3D结构元素的实现验证与验证

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Advances in computational mechanics and simulation platforms create new opportunities for modeling and analyzing complex civil engineering problems and for exploring nonlinear system response and limit states. Nevertheless, methodologies and numerical tools currently in use for the risk assessment of critical structural systems are typically still based on a number of simplifying assumptions such as linear-elastic behavior of the superstructures and the idealization of equivalent linear behavior of the supporting soils. These traditional tools can diminish the ability to realistically investigate inelastic regimes, compromise the interpretation and prediction of the actual structural performance, and limit the ability to accurately explore limit states in a complex facility. In a comprehensive nonlinear computational framework development being supported by the U.S. Department of Energy, ongoing research aims at creating a robust nonlinear time-domain simulation tool set capable of capturing and rigorously modeling the nonlinearities of soil-structure systems. This paper will focus on a general verification and validation (V&V) methodology employed for ascertaining the accuracy of the nonlinear simulation technologies implemented in a new numerical tool under development (RealESSI).
机译:计算力学和仿真平台的进步为建模和分析复杂的土木工程问题和探索非线性系统响应和限制状态创造了新的机会。然而,目前用于关键结构系统的风险评估的方法和数值工具通常仍然基于许多简化假设,例如上层建筑的线性弹性行为以及支撑土的等同线性行为的理想化。这些传统工具可以减少现实地调查非弹性制度的能力,损害实际结构性能的解释和预测,并限制了准确探索复杂设施中的极限状态的能力。在美国能源部支持的全面的非线性计算框架开发中,正在进行的研究旨在创建一个强大的非线性时域模拟工具集,能够捕获和严格地建模土结构系统的非线性。本文将专注于用于确定在开发新的数值工具(Realessi)中实现的非线性模拟技术的准确性的一般验证和验证(V&V)方法。

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