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Dynamic Damage Analysis of SRC Frame Structure under Earthquake Action

机译:地震作用下SRC框架结构的动力损伤分析

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摘要

Structures may enter into nonlinear stage under strong earthquake, so precise prediction of nonlinear behavior for building structure in earthquake is important which can assess the earthquake resistance safety of structures accurately. The exact numerical analysis model is required in actual engineering. In this paper the concept of nonlinear dynamic damage is introduced in steel reinforced concrete (SRC) composite structure, based on the theory of continuous damage mechanics. The damage variable is defined and computed by effective plastic strain of material, furthermore, concrete dynamic constitutive model is derived which considered plastic strain of material. Finally, the damage dynamic balance equation is established. Via comparison with test results of a three-story, two-bay SRC frame model which is tested on a shaking table, it is shown that the results of numerical analysis agree well with test results, indicating that the nonlinear dynamic balance equation is capable of describing the dynamic response of SRC frame structure with satisfactory accuracy. The research supplies theoretical basis for the seismic behavior analysis of SRC high-rise buildings.
机译:在强地震作用下,结构可能会进入非线性阶段,因此准确预测建筑物在地震中的非线性行为具有重要意义,可以准确评估结构的抗震安全性。在实际工程中需要精确的数值分析模型。本文基于连续损伤力学理论,将非线性动态损伤的概念引入钢骨混凝土(SRC)复合结构中。通过材料的有效塑性应变定义和计算损伤变量,并推导了考虑材料塑性应变的混凝土动态本构模型。最后,建立了损伤动平衡方程。通过与在振动台上进行测试的三层两格SRC框架模型的测试结果进行比较,表明数值分析的结果与测试结果吻合得很好,表明非线性动平衡方程能够满足要求。描述了具有令人满意的精度的SRC框架结构的动态响应。该研究为SRC高层建筑的抗震性能分析提供了理论依据。

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