首页> 外文会议>ASME Pressure Vessels and Piping conference >RESEARCH AND DEVELOPMENT OF VISCOUS FLUID DAMPERS FOR IMPROVEMENT OF SEISMIC RESISTANCE OF THERMAL POWER PLANTS PART 5 INFLUENCE OF DAMPER PROPERTIES ON LIFETIME
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RESEARCH AND DEVELOPMENT OF VISCOUS FLUID DAMPERS FOR IMPROVEMENT OF SEISMIC RESISTANCE OF THERMAL POWER PLANTS PART 5 INFLUENCE OF DAMPER PROPERTIES ON LIFETIME

机译:粘性流体阻尼器的研究与开发,用于提高火电厂的抗震性第五部分阻尼器特性对寿命的影响

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In 2011, Great East Japan Earthquake that is the largest earthquake ever observed in Japan occurred. The earthquake had large energy, long duration and many aftershocks, and coal-fired thermal power plants were damaged by the earthquake [1]. Boiler structures in coal-fired thermal power plants are generally high-rise structures, and boilers are simply suspended from the top of the support structures in order to allow thermal expansion, so boilers easily vibrate [2]. In order to suppress vibration of boilers during earthquakes, stoppers are generally set between boilers and support structures. The stoppers are made of steel, and dissipate vibration energy by plastic deformation. However aseismic requirements for thermal power plants have been increased as a result of the Great East Japan Earthquake. Thus authors have developed a vibration control damper for coal-fired power plants. The damper is set instead of conventional stopper. 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 [3-5]. In this paper, influence of damper properties on lifetime of the damper was investigated by seismic response analyses. In addition, lifetime of dampers for long period and long duration earthquake waves were investigated by seismic response analyses.
机译:2011年,发生了日本有史以来最大规模的东日本大地震。地震能量大,持续时间长,余震多,燃煤火力发电厂受到地震的破坏[1]。燃煤火力发电厂的锅炉结构通常是高层结构,锅炉只是从支撑结构的顶部悬挂下来以允许热膨胀,因此锅炉容易振动[2]。为了抑制地震时锅炉的振动,通常在锅炉和支承结构之间设置塞子。塞子由钢制成,并通过塑性变形消散振动能量。然而,由于东日本大地震,对火力发电厂的抗震要求增加了。因此,作者开发了一种用于燃煤电厂的减振阻尼器。设置风门代替传统的塞子。阻尼器的结构类似于机油阻尼器,但内部流体是粘性流体。在PVP 2017中,提出了所建议的阻尼器的基本性能[3-5]。通过地震响应分析,研究了减振器性能对减振器寿命的影响。此外,通过地震响应分析研究了阻尼器在长期和长时间地震波中的寿命。

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