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THE INFLUENCE OF HEAT SOURCE ORIENTATION ON PCM FLOW BEHAVIOR DURING PHASE TRANSITION

机译:相变过程中热源方向对PCM流动行为的影响

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The present study reports the characterization of the transient flow behavior in the liquid PCM domain during the melting process, initiated by a planer heat source. Experiments were conducted at three angles of inclination of the heat source (0, 8 and 18-degrees) from the vertical. Paraffin wax was used as the PCM and was enclosed in an insulated, optically clear, thin rectangular chamber. Particle image velocimetry (PIV) was used during the melting process to measure the instantaneous velocity of the PCM and obtain two-dimensional velocity fields within the liquid domain. Results clearly show the presence of a dominant recirculation zone occurring at all angles. This recirculation zone was enhanced by an increase in the inclination of the heat source, supporting a direct correlation between the tilt angle and the bulk fluid flow in the melted region. The melting rate decreased with the progression of time for all investigated cases. A growing region of stagnant fluid flow within the center of the recirculation zone contributed to the reduction in the melt rate. The size of this stagnant region decreased with increases in the tilt angle due to the enhancement of natural convection. The data demonstrates significant changes in transient flow behavior with orientation in the liquid PCM domain. These results further our understanding of the phase change and associated heat transfer processes in PCM and have wide applicability to PCM-based thermal energy storage.
机译:本研究报告了由平面热源引发的熔融PCM过程中液体PCM域中瞬态流动行为的表征。实验是在热源相对于垂直线的三个倾斜角度(0度,8度和18度)下进行的。使用石蜡作为PCM,并将其封闭在一个绝缘的,透明的,薄的矩形腔室中。在熔化过程中使用了粒子图像测速仪(PIV)来测量PCM的瞬时速度,并获得液域内的二维速度场。结果清楚地表明了在所有角度都存在主要的回流区。通过增加热源的倾斜度可以增强该再循环区域,从而支持倾斜角与熔融区域中的大流量流体之间的直接相关性。在所有调查的案例中,熔化速度都随着时间的推移而降低。回流区中心内滞流的增长区域有助于降低熔解速率。由于自然对流的增加,该停滞区域的尺寸随着倾斜角的增加而减小。数据表明,在液体PCM域中,随着取向的变化,瞬态流动行为发生了显着变化。这些结果使我们进一步了解了PCM中的相变和相关的传热过程,并在基于PCM的热能存储中具有广泛的适用性。

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