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THE EXPERIMENTAL INVESTIGATION OF STEAM CONDENSATION WITH NON-CONDENSABLE GAS UNDER NATURAL CONVECTION

机译:自然对流条件下含不凝性气体蒸汽凝结的实验研究

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The non-condensable gas is used to keep the pressure stable in the steam-gas pressurizer. The processes of heat and mass transfer during steam condensation in the presence of non-condensable gas play an important role and the thermal hydraulic characteristics in the pressurizer is particularly complicated due to the non-condensable gas. The effects of non-condensable gas on the process of heat and mass transfer during steam condensation were experimental investigated. A steam condensation experimental system under high pressure and natural convection was built and nitrogen was chosen in the experiments. The steam and nitrogen were considered in thermal equilibrium and shared the same temperature in the vessel under natural convection. In the experiments, the factors, for instance, pressure, mass fraction of nitrogen, subcooling of wall and the distribution of nitrogen in the steam, had been taken into account. The rate of heat transfer of steam condensation on the vertical wall with nitrogen was obtained and the heat transfer coefficients were also calculated. The characteristics curve of heat and mass transfer during steam condensation with non-condensable gas under high pressure were obtained and an empirical correlation was introduced to calculated to heat transfer coefficient of steam condensation with nitrogen which the calculation results showed great agreement with the experimental data.
机译:不可冷凝气体用于保持蒸汽-气体增压器中的压力稳定。在存在不凝性气体的情况下,蒸汽凝结过程中的传热和传质过程起着重要作用,并且由于不凝性气体的缘故,增压器中的热液压特性特别复杂。实验研究了不凝性气体对蒸汽凝结过程中传热和传质过程的影响。建立了高压自然对流的蒸汽冷凝实验系统,并在实验中选择了氮气。蒸汽和氮气被认为处于热平衡状态,并在自然对流条件下在容器中共享相同的温度。在实验中,考虑了压力,氮的质量分数,壁的过冷和蒸汽中氮的分布等因素。获得了在垂直壁上有氮气的蒸汽冷凝的传热速率,并计算了传热系数。得到了高压下不可凝气体蒸汽凝结过程中传热和传质的特性曲线,并引入了经验相关性来计算氮气与水蒸气凝结的传热系数,计算结果与实验数据吻合较好。

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