Averaged Heat Fluxes Densities During Condensation and Evaporation of a Water Droplet

Mechanics Pub Date : 2024-04-23 DOI:10.5755/j02.mech.35522
Kristina Biknienė, L. Paukštaitis
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Abstract

This study is intended for experimental investigation of the influence of boundary conditions on the intensity of phase transformations and heat transfer processes in  a suspended water droplet. The results of the dynamics of the averaged heat fluxes densities during the droplet phase change cycle are presented and analysed. The influence of the droplet initial temperature, the surrounding air flow temperature and the additional humidity in the air flow were defined in separate regimes of the droplet phase transformations cycle. The  experiments performed demonstrated that the parameters of the air flow surrounding the suspended water droplet affect the intensity of heat fluxes in the droplet throughout whole its phase change cycle. It was experimentally claimed that the initial temperature of the water droplet has no influence on the droplet heat and mass transfer processes in the equilibrium evaporation regime. The obtained results showed that most intensity heat flux densities are at the beginning of the droplet phase change cycle when condensation process occurs on the droplet’s surface in case with biggest amount of additional humidity in the surrounding air flow. This is very important in technologies of cleaning and heat recovery from flue gases.
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水滴凝结和蒸发过程中的平均热通量密度
本研究旨在通过实验研究边界条件对悬浮水滴中相变强度和传热过程的影响。研究介绍并分析了水滴相变周期中平均热通量密度的动态变化结果。在水滴相变周期的不同阶段,确定了水滴初始温度、周围气流温度和气流中额外湿度的影响。实验证明,悬浮水滴周围的气流参数会影响水滴在整个相变周期中的热通量强度。实验证明,在平衡蒸发状态下,水滴的初始温度对水滴的传热和传质过程没有影响。实验结果表明,在周围气流附加湿度最大的情况下,水滴相变周期开始时的热流密度最大,此时水滴表面发生凝结过程。这对烟气清洁和热回收技术非常重要。
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