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Transient Analyses of Passive Residual Heat Removal System of 10MW Molten Salt Reactor Experiment

机译:10MW熔盐反应器实验无源残余散热系统的瞬态分析

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In order to improve the inherent safety of the Molten Salt Reactor (MSR), a concept of passive residual heat removal system (PRHRS) for the 10MW Molten Salt Reactor Experiment (MSRE) was put forward. Its transient characteristics were investigated by developing a model of it using C++ code. The effects of environmental temperature, finned tube number and chimney height on the PRHRS were analyzed. The results show that the PRHRS can remove the decay heat timely. Three natural circulations are established in the PRHRS when it begins to operate. With the decay heat power reducing, the PRHRS can automatically adjust its heat removal ability. It needs not any external power for the PRHRS to operate, which enhances the inherent safety and reliability of the reactor, especially under the condition that power plants lose power.
机译:为了提高熔融盐反应器(MSR)的固有安全性,提出了10MW熔盐反应器实验(MSRE)的被动残留散热系统(PRHRS)的概念。通过使用C ++代码开发它的模型来研究其瞬态特征。分析了环境温度,翅片管数和烟囱高度对PRHRS的影响。结果表明,PRHRS可以及时去除腐烂热量。当它开始运作时,在PRHRS中建立了三种自然循环。随着衰变的热功率降低,PRHR可以自动调节其散热能力。它不需要使用PRHR的任何外部电力,这提高了反应堆的固有安全性和可靠性,尤其是在发电厂失去动力的条件下。

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