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首页> 外文期刊>Journal of Structural Engineering >THREE-DIMENSIONAL STEEL BUILDING RESPONSE TO NEAR-FAULT MOTIONS
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THREE-DIMENSIONAL STEEL BUILDING RESPONSE TO NEAR-FAULT MOTIONS

机译:三维钢结构建筑对近断层运动的响应

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The seismic behavior of a three-story steel framed building designed by consultants for Los Angeles seismic conditions was assessed using 3D dynamic inelastic time-history analyses with near-fault as well as code design level earthquake records. It is shown that 3D frame drifts due to simultaneous strike-normal and strike-parallel shaking were sometimes greater and other times less than for a 2D frame subjected to strike-normal shaking only. The ability of the 30 percent rule, Square Root of the Sum of the Squares, and Sum-of-Absolute-Values methods to assess building drifts for bidirectional shaking effects is dependent on the reference axes chosen. In come cases, horizontal shaking orthogonal to the principal shaking direction increased drifts in the principal shaking direction by up to 84 percent. This occurred as a result of biaxial flexural yielding at column bases so that even the Sum-of-Absolute-Values method underestimated the actual drifts. Also, gravity columns, which were pinned at the base, yielded at the top of the first story due to the severe near fault shaking.
机译:由顾问为洛杉矶地震条件设计的三层钢结构建筑的地震行为使用具有近断层的三维动态非弹性时程分析以及代码设计级别的地震记录进行了评估。结果表明,与仅承受打击法向晃动的 2D 帧相比,同时发生打击法向和平行打击的抖动导致的 3D 帧漂移有时更大,有时更小。30% 规则、平方和的平方根和绝对值总和方法评估建筑物漂移的双向震动效应的能力取决于所选的参考轴。在某些情况下,与主振动方向正交的水平振动使主振动方向的漂移增加了多达 84%。这是由于柱底的双轴弯曲屈服造成的,因此即使是绝对值总和方法也低估了实际漂移。此外,由于严重的近断层震动,固定在底部的重力柱在第一层的顶部屈服。

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