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Experimental investigation of two-phase natural circulation loop as passive containment cooling system

机译:两相自然循环回路作为被动遏制冷却系统的实验研究

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In this study, we experimentally investigate of a two-phase natural circulation loop that functions as a passive containment cooling system (PCCS). The experimental apparatus comprises two loops: a hot loop, for simulating containment under severe accidents, and a natural circulation loop, for simulating the PCCS. The experiment is conducted by controlling the pressure and inlet temperature of the hot loop in the range of 0.59–0.69?MPa (abs) and 119.6–158.8?°C, respectively. The heat balance of the hot loop is established and compared with a natural circulation loop to assess the thermal reliability of the experimental apparatus, and an additional system is installed to measure the vapor mass flow rate. Furthermore, the thermal–hydraulic characteristics are considered in terms of a temperature, mass flow rate, heat transfer coefficient (HTC), etc. The flow rate of the natural circulation loop is induced primarily by flashing, and a distortion is observed in the local HTC because of the fully develop as well as subcooled boiling. As a result, we present the amount of heat capacity that the PCCS can passively remove according to the experimental conditions and compared the heat transfer performance using Chen's and Dittus-Boelter correlation.
机译:在这项研究中,我们通过实验研究了一种双相自然循环回路,其用作被动壳体冷却系统(PCC)。实验装置包括两个环:热回路,用于模拟严重事故下的容纳,以及用于模拟PCC的自然循环回路。通过控制热回路的压力和入口温度分别在0.59-0.69Ω·mPa(ABS)和119.6-158.8°C的范围内进行实验。建立热环的热平衡并与自然循环回路进行比较,以评估实验装置的热可靠性,并安装附加系统以测量蒸汽质量流速。此外,在温度,质量流速,传热系数(HTC)等方面考虑了热液压特性。通常通过闪光来引起自然循环回路的流速,并且在局部观察失真HTC由于完全发展和沸腾沸腾。结果,我们介绍了PCCS可根据实验条件被动地移除的热容量,并使用陈氏和二息相关的相关性比较传热性能。

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