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Reflux Condensation Heat Transfer of Steam-Air Mixture under Turbulent Flow Conditions in a Vertical Tube

机译:垂直管内湍流条件下蒸汽-空气混合物的回流冷凝传热

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Under certain hypothetical accident circumstances in a pressurized water reactor, reflux condensation in the steam generator U-tubes may be an effective heat removal mechanism. Non-condensable gas (air) may be present in the reactor coolant system and is well known to inhibit steam from condensing. In a previous study, local condensation heat transfer coefficients for reflux condensation with air were measured, and an empirical correlation intended for a laminar flow of steam-air mixtures was developed, which was a function of the partial pressure ratio, (P_(steam)/P_(air)). In this study, heat transfer coefficients measured under turbulent flows were used to modify the empirical correlation for improved prediction accuracy. The modified empirical correlation considers convection and is proportional to (P_(steam)/ P_(air))~(0.75)Re_g~(0.8) where Re_g is the steam-air mixture Reynolds number. The correlation was verified against the data of Moon et al. and then incorporated into the transient analysis code RELAP5/SCDAPSIM/MOD3.2. The temperature distributions of the steam-air mixture calculated by the code for six reflux condensation tests are shown to agree well with the measured results.
机译:在压水反应堆中某些假设的事故情况下,蒸汽发生器U型管中的回流冷凝可能是有效的排热机制。反应器冷却剂系统中可能存在不可冷凝的气体(空气),众所周知,这种气体会阻止蒸汽冷凝。在先前的研究中,测量了与空气回流冷凝的局部冷凝传热系数,并开发了用于蒸汽-空气混合物层流的经验相关性,该相关性是分压比(P_(steam) /对))。在这项研究中,在湍流下测得的传热系数用于修正经验相关性,以提高预测精度。修正的经验相关性考虑对流并且与(P_(蒸汽)/ P_(空气))〜(0.75)Re_g〜(0.8)成比例,其中Re_g是蒸汽-空气混合物雷诺数。根据Moon等人的数据验证了相关性。然后合并到瞬态分析代码RELAP5 / SCDAPSIM / MOD3.2中。通过六次回流冷凝测试的代码计算出的蒸汽-空气混合物的温度分布显示出与测量结果非常吻合。

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