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Droplet Departure Characteristics and Dropwise Condensation Heat Transfer at Low Steam Pressure

机译:低蒸汽压力下的液滴离析特性和滴状冷凝传热

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摘要

Dropwise condensation has received significant attention due to its great potential to enhance heat transfer by the rapid droplet removal. In this work, droplet departure characteristics on a vertical surface, especially the droplet departure retention at low steam pressure and its effect on the heat transfer performance are investigated experimentally. The energy dissipation increases during droplet movement due to the increased viscosity at low pressure. Droplet oscillation caused by excess kinetic energy weakens and the dynamic contact angle (CA) hysteresis becomes apparent, which is not beneficial to droplet departure. Condensed droplets grow larger and fall more slowly at low pressure compared to that at atmospheric pressure. The droplet moves smoothly downward once it grows to departure size at atmospheric pressure while the droplet exhibits an intermittent motion at low pressure. Based on the droplet departure characteristics, a unified heat transfer model for dropwise condensation is developed by introducing the pressure-dependent departure velocity. The modified model very well predicts heat transfer performances at various pressures and the nonlinearity of heat flux varying with surface sub-cooling is quantitatively explained. This work provides insights into the heat transfer mechanism of dropwise condensation and offers a new avenue to further enhance heat transfer at low steam pressure.
机译:逐滴凝结由于其通过迅速去除液滴来增强传热的巨大潜力而​​备受关注。在这项工作中,实验研究了垂直表面上的液滴离开特性,尤其是在低蒸汽压力下的液滴离开保持力及其对传热性能的影响。由于在低压下粘度的增加,液滴运动过程中的能量消耗增加。由过量动能引起的液滴振荡减弱,并且动态接触角(CA)滞后变得明显,这对液滴离开无益。与大气压下相比,低压下凝结的液滴长得更大,落下的速度更慢。液滴一旦在大气压下增长到离开尺寸,便平稳地向下移动,而液滴在低压下表现出间歇运动。基于液滴的离去特性,通过引入与压力有关的离去速度,建立了一个统一的逐滴冷凝传热模型。改进的模型很好地预测了在各种压力下的传热性能,并定量解释了随着表面过冷而变化的热通量的非线性。这项工作提供了对逐滴冷凝的传热机理的见解,并为进一步提高低蒸汽压下的传热提供了新途径。

著录项

  • 来源
    《Journal of Heat Transfer》 |2016年第7期|071501.1-071501.8|共8页
  • 作者单位

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

    Liaoning Provincial Key Laboratory of Clean Utilization of Chemical Resources, Institute of Chemical Engineering, Dalian University of Technology, No. 2 Linggong Rd., High-Tech District, Dalian 116024, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dropwise condensation; low pressure steam; droplet departure; contact angle hysteresis; dynamic behavior; heat transfer model;

    机译:逐滴冷凝低压蒸汽;液滴飞散;接触角滞后;动态行为传热模型;
  • 入库时间 2022-08-18 00:22:18

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