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Investigation of the influence of heat source orientation on the transient flow behavior during PCM melting using particle image velocimetry

机译:利用粒子图像测速研究热源方向对PCM熔化过程中瞬态流动行为的影响

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摘要

The present study reports the characterization of transient flow and thermal behavior of phase change material (PCM) during solid-liquid phase change (melting) through experimental investigation. Two specific aspects of the current work, both important in the field of latent heat thermal energy storage, are to investigate the influence of the flow behavior within liquid PCM on the melting and heat transfer processes, and the impact of heat source orientation on the underlying melting and heat transfer processes. Particle image velocimetry (PIV) was used to measure the velocity fields in the liquid PCM, while thermocouples were used to measure the temperature fields. During PCM melting, three distinct phases of heat transfer were found: strong conduction, strong natural convection and weakening natural convection. The transient Nusselt number characterized the underlying physical behavior observed through transient flow and temperature fields. The findings show that the fluid velocity plays a critical role in the transportation of heat within the liquid domain, which in turn regulates the melting trend and hence, the overall heat transfer. These results further extended the understanding of phase change and the associated heat transfer processes in the PCM and provide comprehensive benchmark data for the improvement of numerical models simulating the solid-liquid phase change process.
机译:本研究通过实验研究报告了固液相变(熔融)过程中相变材料(PCM)的瞬态流动和热行为的表征。当前工作的两个特定方面(在潜热热能存储领域都非常重要)是研究液体PCM内的流动行为对熔化和传热过程的影响,以及热源方向对下层的影响。熔化和传热过程。粒子图像测速(PIV)用于测量液体PCM中的速度场,而热电偶用于测量温度场。在PCM熔化期间,发现了三个不同的传热阶段:强传导,强自然对流和弱自然对流。瞬态Nusselt数表征了通过瞬态流场和温度场观察到的基本物理行为。研究结果表明,流体速度在液体域内的热传递中起着至关重要的作用,从而反过来调节了熔融趋势,从而调节了整体的热传递。这些结果进一步扩展了对相变及其相关传热过程的理解,并为模拟固液相变过程的数值模型的改进提供了全面的基准数据。

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