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Experimental and Numerical Investigation of the Freezing of Water Droplets on Solid Surfaces

机译:固体表面水滴冻结的实验和数值研究

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摘要

We present an experimental and numerical study on the freezing of static water droplets on surfaces with different wettability and subject to rapid cooling.Temperature evolution of the droplets was recorded using both intrusive and non-intrusive methods to identify the processes involved in the cooling and phase change of the droplets.It was found the time taken for a droplet to freeze depends on the droplet temperature at the pre-recalescence instant as well as the surface wettability.To provide insight into the heat transfer during the freezing process,thermal simulation was carried out by numerically solving the enthalpy-based heat conduction equation.To determine the initial and boundary conditions for the simulation of freezing,the thermal history of the droplet prior to the occurrence of freezing was numerically analysed by solving single phase heat conduction driven by rapid cooling.The numerical results of droplet freezing were compared to the experimental data,showing close agreement on the freezing time.
机译:我们提供了一个实验和数值研究,研究了静态水滴在不同润湿性和快速冷却下的冻结情况,并采用侵入式和非侵入式方法记录了液滴的温度演变,以识别冷却和相变过程。发现液滴冻结所需的时间取决于预重现瞬间的液滴温度以及表面的润湿性。为了深入了解冻结过程中的热传递,进行了热模拟为了求解冻结的初始条件和边界条件,通过求解由快速冷却驱动的单相导热来数值分析冻结发生前液滴的热历史。将液滴冻结的数值结果与实验数据进行比较,显示接近记录冻结时间。

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