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Preliminary design and assessment of a heat pipe residual heat removal system for the reactor driven subcritical facility

机译:电抗器驱动亚临界设施热管剩余散热系统的初步设计与评价

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A heat pipe residual heat removal system is proposed to be incorporated into the reactor driven subcritical (RDS) facility, which has been proposed by MIT Nuclear Reactor Laboratory for testing and demonstrating the Fluoride-salt-cooled High-temperature Reactor (FHR). It aims to reduce the risk of the system operation after the shutdown of the facility. One of the main components of the system is an air-cooled heat pipe heat exchanger. The alkali-metal high-temperature heat pipe was designed to meet the operation temperature and residual heat removal requirement of the facility. The heat pipe model developed in the previous work was adopted to simulate the designed heat pipe and assess the heat transport capability. 3D numerical simulation of the subcritical facility active zone was performed by the commercial CFD software STAR CCM?+?to investigate the operation characteristics of this proposed system. The thermal resistance network of the heat pipe was built and incorporated into the CFD model. The nominal condition, partial loss of air flow accident and partial heat pipe failure accident were simulated and analyzed. The results show that the residual heat removal system can provide sufficient cooling of the subcritical facility with a remarkable safety margin. The heat pipe can work under the recommended operation temperature range and the heat flux is below all thermal limits. The facility peak temperature is also lower than the safety limits.
机译:提出了一种热管残留的散热系统,其结合到反应器驱动的亚临界(RDS)设施中,该设施已经通过麻省理工学院核反应堆实验室提出,用于测试和证明氟化盐冷却的高温反应器(FHR)。它旨在减少设施关闭后系统操作的风险。该系统的主要部件之一是风冷的热管热交换器。碱金属高温热管设计成满足设施的操作温度和残余除去要求。采用先前工作中开发的热管模型来模拟设计的热管,并评估热传输能力。 3D商业CFD软件Star CCM +亚临界设施有源区的数值模拟?+研究了该系统的操作特性。热管的热阻网络建造并结合到CFD模型中。标称情况,模拟和分析了空气流动事故和部分热管故障事故的部分丧失。结果表明,残留散热系统可以提供具有显着的安全余量的亚临界设施的充分冷却。热管可以在推荐的操作温度范围内工作,热通量低于所有热限制。设施峰值温度也低于安全限制。

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