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首页> 外文期刊>Journal of The Institution of Engineers (India) >Behavior of a Nuclear Power Plant Ventilation Stack for Wind Loads
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Behavior of a Nuclear Power Plant Ventilation Stack for Wind Loads

机译:核电厂通风堆在风荷载作用下的行为

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This paper describes behavior of self supporting tall reinforced concrete (RC) ventilation stack of a nuclear power plant (NPP) for wind loads. Since the static and equivalent dynamic wind loads are inter-dependant on overall size of the stack, proper sizing of the stack geometry is important for reducing wind loads. The present study investigated the influence of engineered backfill soil on lateral response of ventilation stack. Ignoring backfill soil stiffness up to ground height does not allow to predict actual critical wind velocity causing across wind oscillation. The results show that proposed modification in the stack geometry modeled using 2D beam-spring elements is economical than that of single tapered geometry. Shaft diameter reduced in the proposed geometry indicates that there is a scope for overall space savings in the NPP layout.
机译:本文介绍了核电厂(NPP)自支撑高强度钢筋混凝土(RC)通风堆栈在风荷载下的行为。由于静态和等效动态风荷载取决于烟囱的整体尺寸,因此烟囱几何尺寸的正确确定对于减少风荷载很重要。本研究调查了工程回填土对通风堆横向响应的影响。忽略回填土的刚度直到地面高度都无法预测导致整个风振的实际临界风速。结果表明,使用2D束簧元件建模的堆栈几何结构的拟议修改比单锥形几何结构的修改更经济。所建议的几何形状中的轴径减小表明,在NPP布局中可以节省总体空间。

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