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Structural evaluation of a piping system subjected to thermal stratification

机译:进行热分层的管道系统的结构评估

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Piping systems in nuclear power plants are often designed for pressure, mechanical loads originating from deadweight and seismic events and operating thermal transients using the equations in the ASME Boiler and Pressure Vessel Code, Section III. In the last few decades a number of failures in piping have occurred due to thermal stratification caused by the mixing of hot and cold fluids under certain low flow conditions. Such stratified temperature fluid profiles give rise to circumferential metal temperature gradients through the pipe leading to high stresses causing fatigue damage. A simplified method has been developed in this work to estimate the stresses caused by the circumferential temperature distribution from thermal stratification. It has been proposed that the equation for the peak stress in the ASME Section III piping code include an additional term for thermal stratification.
机译:核电厂的管道系统通常使用ASME锅炉和压力容器规范第III节中的公式来设计,以应对来自自重和地震事件的压力,机械负载以及运行中的热瞬变。在过去的几十年中,由于在某些低流量条件下热流体和冷流体的混合引起的热分层,使管道发生了许多故障。这种分层的温度流体分布会引起通过管道的金属周向温度梯度,从而导致高应力,从而造成疲劳损伤。在这项工作中已经开发出一种简化的方法来估算由热分层引起的圆周温度分布所引起的应力。有人提出,ASME第三节管道规范中的峰值应力方程式包括一个热分层的附加术语。

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