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SIMPLIFIED MODELING AND DETAILED CRACK PROPAGATION ANALYSIS FOR CRACKED PIPES

机译:裂纹管的简化建模与详细裂纹传播分析

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Two analysis approaches for a cracked pipe subjected to a seismic load were focused on. The first approach is a simplified modeling technique using a nonlinear spring element. A degrading model called a deteriorating distributed element was improved to simulate the asymmetric and degrading behavior of a cracked pipe. The second approach is a detailed crack propagation analysis using the finite element method (FEM). This approach is based on fracture mechanics, and crack growth is determined by using fracture parameters such as the J-integral range obtained from the FEM. Iterative re-meshing of the analysis model using solid elements was conducted to evaluate fatigue crack growth for cyclic loads. These two approaches were applied to a cracked pipe test. In comparing the test results, it was confirmed that the simplified modeling and detailed analysis approaches are applicable to a seismic analysis for a cracked pipe.
机译:对经受震动载荷进行裂缝管的两种分析方法进行了重点。第一方法是使用非线性弹簧元件的简化建模技术。改进了一种称为恶化分布元件的降级模型以模拟裂纹管的不对称和降低行为。第二种方法是使用有限元方法(FEM)的详细裂纹传播分析。该方法基于断裂力学,通过使用裂缝参数(例如从FEM获得的J-积分范围)确定裂纹生长。进行使用固体元素的分析模型的迭代再啮合以评估循环载荷的疲劳裂纹生长。将这两种方法应用于破裂的管道测试。在比较测试结果时,证实简化的建模和详细分析方法适用于裂纹管的地震分析。

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