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Experimental study on the direct contact condensation of steam jet in subcooled water flow in a rectangular mix chamber

机译:矩形混合室内过冷水流中蒸汽射流直接接触冷凝的实验研究

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An experimental study on the direct contact condensation (DCC) of steam jet in subcooled water flow in a rectangular mix chamber was conducted. A high-speed camera was employed to record the flow field of DCC in the visualized experimental rig, in which, the steam nozzle and water nozzle were both rectangular. The flow field was filmed when the steam mass flux, water mass flux and water temperature were in the range of 200-600 kg/m~2 s, 6000-18000 kg/m~2 s and 293-333 K, respectively. The results indicated that, the flow field of DCC in the rectangular mix chamber consisted of four regions, and they were steam region, interface, mixture layer and ambient water region. The interface between steam region and mixture layer was clearly observed. The flow pattern of DCC was performed as bubble flow, oscillatory jet, stable jet and divergent jet at various test conditions. The steam region dimensionless penetration length and average heat transfer coefficient of the stable jet were found to be in the range of 1.73-4.40 and 2.89-7.89 MW/m~2 K, respectively. Furthermore, an analytical model was established and a correctional correlation was developed to predict the dimensionless penetration length. An empirical correlation was proposed to predict the average heat transfer coefficient.
机译:对矩形混合室内过冷水流中蒸汽喷射的直接接触冷凝(DCC)进行了实验研究。高速摄像头用于在可视化实验装置中记录DCC的流场,其中蒸汽喷嘴和水喷嘴均为矩形。当蒸汽质量通量,水质量通量和水温分别为200-600 kg / m〜2 s,6000-18000 kg / m〜2 s和293-333 K时,流场成膜。结果表明,矩形混合室中DCC的流场由四个区域组成,分别是蒸汽区域,界面区域,混合层区域和环境水区域。清楚地观察到蒸汽区域和混合物层之间的界面。在各种测试条件下,DCC的流型为气泡流,振荡射流,稳定射流和发散射流。稳定射流的蒸汽区域无因次穿透长度和平均传热系数分别为1.73-4.40和2.89-7.89 MW / m〜2K。此外,建立了分析模型,并建立了校正相关性以预测无因次穿透长度。提出了一种经验相关性来预测平均传热系数。

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