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Experimental Study of Density Lock in Passive Residual Heat Removal System

机译:被动余热排出系统中密度锁的实验研究

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Conceptual design of advanced passive residual heat removal system in which density lock is applied is proposed, moreover theoretical analysis and experimental study on its feasibility is carried out. According to the design, atmospheric-pressure experimental loop is built so that researches on working performance of density lock in the system are done at steady-state operation and pump trip conditions. The results show that at steady-state operation conditions, density lock can keep close in a long run, which will separate passive residual heat removal system from primary circuit system. As a result, passive residual heat removal system is in the non-operating conditions, which do not influence normal operation of reactors. At the pump trip conditions, density lock can be automatically opened quickly, which will make primary and passive heat removal system communicated. The natural circulation is well established in the two systems, and is enough to ensure removal of residual heat. In addition, experimental study on operating reliability of density lock is made on the condition of small flow surge. The result show that the flow surge do not lead to the failure of the function of density lock, but bring about a little position change of temperature interface in the density lock, moreover, a new balance steady state will arrive very soon.
机译:提出了应用密度锁的先进被动式余热除尘系统的概念设计,并进行了理论分析和实验研究。根据设计,建立了大气压实验回路,以便在稳态运行和泵跳闸条件下对系统中密度锁的工作性能进行研究。结果表明,在稳态运行条件下,密度锁定可以长期保持关闭状态,这将使被动余热排除系统与一次回路系统分离。结果,被动余热去除系统处于非运行状态,这不会影响反应堆的正常运行。在泵跳闸的情况下,密度锁可以自动快速打开,这将使主要和被动排热系统进行通信。在这两个系统中均建立了自然循环,足以确保去除残留热量。另外,在小流量涌动条件下进行了密度锁运行可靠性的实验研究。结果表明,流量突增并不会导致密度锁功能的失败,反而会引起密度锁中温度界面的位置变化,而且,很快就会出现新的平衡稳态。

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