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An experimental study on evaporative heat transfer coefficient and applications for passive cooling of AP600 steel containment

机译:AP600钢制安全壳蒸发传热系数的试验研究及其在被动冷却中的应用

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摘要

After TMI and Chernobyl accidents, many efforts have been made to enhance the nuclear safety with passive features. Among such passive features, the passive containment cooling system (PCCS) has been suggested by Westinghouse in the AP600 plant. The containment with PCCS is a dual containment, and consists of a stainless steel vessel and a concrete wall. In the gap between these structures, air and water can counter-currently pass and cool the steel surface. This paper experimentally investigates evaporative heat and mass transfer at the surface of a falling water film with counter-current air flow in a vertical duct with one-side heated plate. Experiments included various conditions of mass flow rate of film and air. Experimental results show the strong effects of water temperature and air mass flow rate, but little effect of the water flow rate. Also, simple analyses based on heat and mass transfer analogy were performed to evaluate the experimental results. With experimental data, a new correlation on evaporative mass transfer coefficient was developed, and with the correlation, the containment pressure and temperature was calculated for the design basis accident of AP600 by the use of CONTEMPT4/MOD5 code implementation.
机译:在发生TMI和切尔诺贝利事故之后,为增强具有被动功能的核安全做出了许多努力。在这些被动功能中,Westinghouse已在AP600工厂中提出了被动安全壳冷却系统(PCCS)。 PCCS的安全壳是双重安全壳,由不锈钢容器和混凝土墙组成。在这些结构之间的间隙中,空气和水会逆流通过并冷却钢表面。本文实验研究了带有单侧加热板的垂直管道中逆流气流在下落的水膜表面的蒸发传热和传质。实验包括膜和空气的质量流率的各种条件。实验结果表明,水温和空气质量流量的影响很大,而水流量的影响很小。另外,基于传热和传质的类比进行了简单分析,以评估实验结果。利用实验数据,建立了蒸发传质系数的新的相关关系,并利用CONTEMPT4 / MOD5代码实现,为AP600的设计基准事故计算了安全壳压力和温度。

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