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EFFECT OF SURFACE WETTABILITY ON DROPWISE CONDENSATION USING LATTICE BOLTZMANN METHOD

机译:用格子Boltzmann方法对表面润湿性对滴凝的影响

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Understanding the condensation mechanism is crucial to enhance the heat transfer performance of numerous industrial applications such as power generations, fog harvesting, water desalination, cooling of nuclear reactor, and thermal management of electronic device. In the present study, simulations are performed to investigate the effect of surface wettability on droplet growth dynamics during dropwise condensation. To simulate droplet growth dynamics involving phase change heat transfer, thermal lattice Boltzmann method has been employed with two distribution function for fluid and temperature field. Simulations performed in this work are used to analyze the effect of surface wettability on nucleation time and the evolution of average droplet radius, height, base diameter, and contact angle of the droplet. It is observed that nucleation time increases exponentially with the contact angle. The growth rate of droplet is higher for smaller droplets compared to larger droplets.
机译:了解冷凝机制至关重要,以提高众多工业应用的传热性能,如电力代,雾收获,水脱盐,核反应堆的冷却以及电子设备的热管理。在本研究中,进行模拟以研究滴定缩合期间表面润湿性对液滴生长动力学的影响。为了模拟涉及相变传热的液滴生长动态,热格螺栓玻璃法已经采用了用于流体和温度场的两个分布函数。在该工作中进行的模拟用于分析表面润湿性对液滴的平均液滴半径,高度,基部直径和接触角的核心润湿性的影响。观察到核切割时间随着接触角呈指数呈指数增加。与较大的液滴相比,液滴的生长速率较高。

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