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Seismic performance-based design and risk analysis of thermal power plant building with consideration of vertical and mass irregularities

机译:考虑垂直和质量不规则的火力发电厂建筑物基于地震性能的设计和风险分析

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摘要

Industrial buildings often have irregularities due to operational and complex industrial process. In this paper, a thermal power plant with mass and vertical irregularities was designed with the 2010 ASCE and AISC design codes. Subsequently, a parametric study was undertaken on simplified braced frames to quantify the impact of mass and vertical irregularities, as well as their combined effect. Detailed numerical models were developed in Open System for Earthquake Engineering Simulation platform. With a high seismicity level in China, ground motions were selected and nonlinear time-history analyses were performed. Subsequently, probabilistic seismic demand models, seismic fragilities, and risks were developed for different performance levels. The results show that the vertical irregularity generated larger detrimental effect than mass irregularity, and need more attention in structural design. Collapse risk increased the most due to the combined effect of mass and vertical irregularities. Furthermore, under small earthquake intensities, the thermal power plant with the combined irregularities had higher risk in functional disruption.
机译:由于操作和复杂的工业过程,工业建筑通常具有不规则性。本文采用2010 ASCE和AISC设计规范设计了具有质量和垂直不规则性的火力发电厂。随后,对简化的支撑框架进行了参数研究,以量化质量和垂直不规则的影响以及它们的组合效果。在用于地震工程仿真的开放系统中开发了详细的数值模型。在中国地震烈度较高的情况下,选择了地震动并进行了非线性时程分析。随后,针对不同性能水平开发了概率地震需求模型,地震脆弱性和风险。结果表明,竖向不平整比质量不平整产生更大的有害影响,在结构设计中需要更多的关注。由于质量和垂直不规则的共同作用,倒塌风险增加最多。此外,在小地震烈度下,具有不规则现象的火力发电厂功能中断的风险更高。

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