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首页> 外文期刊>E3S Web of Conferences >Effect of heat pipe failure on performance of residual heatremoval system with heat pipe for small lead-based reactor
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Effect of heat pipe failure on performance of residual heatremoval system with heat pipe for small lead-based reactor

机译:热管故障对小型铅反应堆热管剩余过度测量系统性能的影响

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Heat pipe have the characteristics of high thermal conductivity, high safety performance, without external power, etc. In this paper, The numerical simulation CFD software FLUENT is used to study the thermal-hydraulic characteristics performance of heat pipe waste heat removal system with heat pipe for lead-based reactor under normal conditions and Station-Black-Out (SBO) with partial heat pipes damage respectively. Results showed that heat pipes promote heat transfer in the reactor and reduced the temperature of the fluid around the reactor during normal operation; Heat in the core could be removed smoothly by the PRHRS during SBO accident without heat pipe damage ; and when the proportion of failed heat pipes is less than 50% during SBO accident , the PRHRS could still ensure safe operation of the reactor and the distribution of failed heat pipes in the reactor results the core temperature variation by less than 5 K.
机译:热管具有高导热率,安全性能高,无需外部电源等。本文用来流畅的数值模拟CFD软件流畅,研究了热管垃圾散热系统的热液压特性性能 对于正常情况下的铅基反应器和站 - 黑色(SBO)分别具有部分热管损坏。 结果表明,热管促进反应器中的热传递,并在正常操作期间降低了反应器周围的流体温度; 在没有热管损坏的情况下,PRHRS可以通过PRHRS顺利地除去芯中的热量; 当SBO事故期间失效的热管比例小于50%时,PRHRS仍然可以确保反应器的安全操作,反应器中的失效热管的分布导致核心温度变化小于5 k。

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