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Characteristics of the high-temperature water film evaporation with countercurrent turbulent air flow in the duct

机译:管道中逆流湍流空气流动的高温水膜蒸发特性

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Passive containment with high design pressure often has high evaporation temperature. The evaporation mass transfer with high evaporation temperature along with countercurrent turbulent airflow in a long duct was experimentally investigated. The experiments were performed for a wall surface temperature range of 71-90 degrees C. The experimental data showed that the high evaporation temperature significantly enhanced evaporation. By comparison, it reveals that the significant prediction deviation of the correlation from Kang and Park (Nuclear Engineering and Design, Vol. 204, pp 347-359, 2001) is mainly due to the cubic power modification. HMTA from Huang and Yang (Annals of Nuclear Energy, Vol. 76, pp 237-242, 2015) also underestimates the Sherwood number at high evaporation temperature but it could be applicable when the modification of the wavy interface and the advective mass transfer are included. A modified correlation for falling water film evaporation with high evaporation temperature is finally developed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:具有高设计压力的被动遏制通常具有高蒸发温度。实验研究了具有高蒸发温度以及长管中的逆流湍流气流的蒸发质量传递。对71-90摄氏度的壁表面温度范围进行实验。实验数据显示高蒸发温度显着增强蒸发。相比之下,揭示了康与公园(核工程和设计,Vol.204,PP 347-359,2001)的显着预测偏差主要是由于立方电力改性。来自黄和杨的HMTA(核能历史,Vol.76,PP 237-242,2015)也低估了泼妇的高蒸发温度,但是当涉及波浪界面和平流传质的改变时,它可以适用。最终开发了具有高蒸发温度的水膜蒸发的改性相关性。 (c)2019 Elsevier Ltd.保留所有权利。

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