首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >RESEARCH AND DEVELOPMENT OF VISCOUS FLUID DAMPERS FOR IMPROVEMENT OF SEISMIC RESISTANCE OF THERMAL POWER PLANTS: PART 8 — EVALUATION OF VIBRATION CONTROL PERFORMANCE USING EXPERIMENTAL DESIGN METHOD
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RESEARCH AND DEVELOPMENT OF VISCOUS FLUID DAMPERS FOR IMPROVEMENT OF SEISMIC RESISTANCE OF THERMAL POWER PLANTS: PART 8 — EVALUATION OF VIBRATION CONTROL PERFORMANCE USING EXPERIMENTAL DESIGN METHOD

机译:粘性流体阻尼器的研究与开发,提高热电厂抗震性能:第8部分 - 使用实验设计方法评价振动控制性能

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After Great East Japan Earthquake, coal-fired thermal power generation is a very important power source in Japan. In addition, Hokkaido Eastern Iburi Earthquake occurred in Japan in 2018, and damage of coal-fired thermal power plants by this earthquake caused blackout in very wide area. Therefore improvement of the seismic performance of the thermal power plants is a very important issue. In general boilers of coal-fired power plants are suspended from the upper end of support structures in order to allow thermal expansion of the boilers. Therefore boilers are structures that easily sway by earthquakes. In order to suppress the vibration, stoppers made of steel are generally installed between boilers and their support structures. Although stoppers made of steel can suppress the vibration effectively and economically, further improvement of seismic performance is required from the viewpoint of abovementioned issue. Therefore authors have proposed and developed a vibration control damper for coal-fired power plants instead of the stopper made of steel. Construction of the damper is similar to oil dampers, but inner fluid is viscous fluid. In PVP 2017, the basic performance of the proposed damper was presented. In PVP 2018, influence of dispersion of damper properties was also investigated. In addition, seismic response analyses using various earthquakes that include long period and long duration earthquake waves were carried out. As a result of previous investigations, it was confirmed that the proposed damper has good performance in its lifetime. However, parameters of dampers were selected manually. Therefore, influence of parameters of dampers on the vibration control performance were evaluated theoretically by using the experimental design method in this paper. The experimental design method is one of the effective techniques for research such as investigation of the influence of the habitat environment on the growth of crops. The selection of damper parameters is complex optimization, because so many variables need to be optimized. Therefore the experimental design method is suitable technique for the evaluation of damper parameters. This paper will evaluate vibration control performance from the viewpoint of the experimental design method.
机译:大东日本地震后,燃煤热发电是日本非常重要的电源。此外,2018年日本北海道东部地震发生,这种地震燃煤热电厂的损坏引起了广阔的地区的停电。因此,改善热电厂的地震性能是一个非常重要的问题。在燃煤发电厂的一般锅炉中悬挂在支撑结构的上端,以便允许锅炉的热膨胀。因此,锅炉是通过地震容易地摆动的结构。为了抑制振动,钢制成的塞子通常安装在锅炉和它们的支撑结构之间。尽管钢制钢可以有效和经济地抑制振动,但从上述问题的观点来看,需要进一步提高地震性能的进一步提高地震性能。因此,作者提出并开发了一种用于燃煤电厂的振动控制阻尼器,而不是由钢制成的止动件。阻尼器的结构类似于油阻尼器,但内部流体是粘性流体。在PVP 2017中,提出了拟议阻尼器的基本性能。在PVP 2018中,还研究了阻尼器性能分散的影响。此外,进行了使用包括长期和长期地震波的各种地震的地震反应分析。由于先前的调查,证实拟议的阻尼器在其寿命中具有良好的性能。但是,手动选择阻尼器的参数。因此,通过本文使用实验设计方法理论上评估了阻尼器参数对振动控制性能的影响。实验设计方法是研究的有效技术之一,如栖息地环境对作物生长的调查。阻尼参数的选择是复杂的优化,因为需要优化许多变量。因此,实验性设计方法是用于评估阻尼参数的合适技术。本文将从实验设计方法的观点来看振动控制性能。

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