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Optimum seismic design of a power plant building with pendulum tuned mass damper system by its heavy suspended buckets

机译:带有重悬架的摆调质量阻尼系统的电厂建筑物的最佳抗震设计。

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This paper focuses on the seismic performance of a typical coal-fired power plant with suspended nonstructural coal buckets inside the structure. In order to systematically evaluate and minimize the seismic responses of the power plant, this research developed a mechanism to optimally design the equivalent pendulum-type tuned mass damper (PTMD) system such that the inter-story drifts under earthquake excitations are minimized while the coal buckets are also protected. A full scale computational model of the tested specimen is developed and its modeling details are validated against the experimental results. Subsequently, the optimal ranges for PTMD variables have been derived according to the cases showing most structural response reductions. As a result, a conceptual "length-adaptive" PTMD design according to the optimized results is proposed for the mass-varying system. It is shown that the optimal implementation of PTMD can significantly reduce the inter-story drifts and it also outperforms the adopted PTMD design in the real structure. The study demonstrates a systematic way of achieving the optimal real-structure PTMD design with considerations of uncertainties in earthquake input, system nonlinearities, and other structural complexities. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文重点研究结构内部悬挂有非结构性煤桶的典型燃煤电厂的抗震性能。为了系统地评估和最小化发电厂的地震响应,本研究开发了一种机制来优化设计等效摆式调谐质量阻尼器(PTMD)系统,从而使地震激励下的层间漂移最小,而煤桶也受到保护。建立了被测样品的全尺寸计算模型,并针对实验结果验证了其建模细节。随后,根据显示出大多数结构响应降低的情况,得出了PTMD变量的最佳范围。结果,提出了针对质量变化系统的根据优化结果的概念性“长度自适应” PTMD设计。结果表明,最佳的PTMD实现方案可以显着减少层间漂移,并且在实际结构中也优于采用的PTMD设计。这项研究展示了一种系统的方法,该方法通过考虑地震输入的不确定性,系统非线性和其他结构复杂性来实现最佳的实结构PTMD设计。 (C)2017 Elsevier Ltd.保留所有权利。

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