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Three-dimensional nonlinear inelastic analysis of steel moment-frame buildings damaged by earthquake excitations

机译:地震激励破坏的钢框架结构的三维非线性非弹性分析

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摘要

The Northridge earthquake of January 17, 1994, highlighted the two previously known problems of premature fracturing of connections and the damaging capabilities of near-source ground motion pulses. Large ground motions had not been experienced in a city with tall steel moment-frame buildings before. Some steel buildings exhibited fracture of welded connections or other types of structural degradation.ududA sophisticated three-dimensional nonlinear inelastic program is developed that can accurately model many nonlinear properties commonly ignored or approximated in other programs. The program can assess and predict severely inelastic response of steel buildings due to strong ground motions, including collapse.ududThree-dimensional fiber and segment discretization of elements is presented in this work. This element and its two-dimensional counterpart are capable of modeling various geometric and material nonlinearities such as moment amplification, spread of plasticity and connection fracture. In addition to introducing a three-dimensional element discretization, this work presents three-dimensional constraints that limit the number of equations required to solve various three-dimensional problems consisting of intersecting planar frames.ududTwo buildings damaged in the Northridge earthquake are investigated to verify the ability of the program to match the level of response and the extent and location of damage measured. The program is used to predict response of larger near-source ground motions using the properties determined from the matched response.ududA third building is studied to assess three-dimensional effects on a realistic irregular building in the inelastic range of response considering earthquake directivity. Damage levels are observed to be significantly affected by directivity and torsional response.ududSeveral strong recorded ground motions clearly exceed code-based levels. Properly designed buildings can have drifts exceeding code specified levels due to these ground motions. The strongest ground motions caused collapse if fracture was included in the model. Near-source ground displacement pulses can cause columns to yield prior to weaker-designed beams. Damage in tall buildings correlates better with peak-to-peak displacements than with peak-to-peak accelerations.ududDynamic response of tall buildings shows that higher mode response can cause more damage than first mode response. Leaking of energy between modes in conjunction with damage can cause torsional behavior that is not anticipated.ududVarious response parameters are used for all three buildings to determine what correlations can be made for inelastic building response. Damage levels can be dramatically different based on the inelastic model used. Damage does not correlate well with several common response parameters.ududRealistic modeling of material properties and structural behavior is of great value for understanding the performance of tall buildings due to earthquake excitations.ud
机译:1994年1月17日的诺斯里奇(Northridge)地震突出了两个先前已知的连接过早断裂和近源地震动脉冲破坏能力的问题。以前,在拥有高架钢框架的城市中,没有进行过大型地面运动。一些钢结构建筑物显示出焊接连接断裂或其他类型的结构退化。 ud ud开发了一种复杂的三维非线性非弹性程序,该程序可以准确地建模通常在其他程序中忽略或近似的许多非线性特性。该程序可以评估和预测由于强烈的地面运动(包括倒塌)而引起的钢结构建筑物的严重非弹性响应。 ud ud在这项工作中提出了三维纤维和元素的分段离散化方法。该元件及其二维对应物能够对各种几何和材料非线性建模,例如力矩放大,塑性扩展和连接断裂。除了引入三维元素离散化之外,这项工作还提出了三维约束,这些约束限制了解决由相交平面框架组成的各种三维问题所需的方程组的数量。 ud ud调查了北岭地震中受损的两座建筑物验证程序匹配响应级别以及所测量损害的程度和位置的能力。该程序用于使用由匹配响应确定的属性来预测较大的近源地震动的响应。 ud ud研究了第三座建筑物,以评估考虑地震的非弹性响应范围内对不规则真实建筑物的三维影响方向性。观察到损坏程度受方向性和扭转响应的影响很大。 ud ud记录的多次强烈地面运动明显超过了基于代码的程度。由于这些地面运动,设计合理的建筑物的漂移可能会超过规范规定的水平。如果模型中包括裂缝,则最强烈的地面运动会导致坍塌。近源地位移脉冲会导致柱在设计较弱的梁之前屈服。高层建筑中的损伤与峰-峰位移的相关性比与峰-峰加速度的相关性更好。 ud ud高层建筑的动态响应表明,较高的模式响应会比第一模式响应引起更多的损坏。模式之间的能量泄漏以及损坏会导致无法预料的扭转行为。 ud ud所有三座建筑物均使用了各种响应参数来确定可对非弹性建筑物响应进行哪些关联。根据所使用的非弹性模型,破坏程度可能会大不相同。损坏与几个常见的响应参数没有很好的关联。 ud ud材料特性和结构行为的真实模型对于理解高层建筑由于地震激励而产生的性能具有重要价值。

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    Carlson Anders E.;

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  • 年度 1999
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