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Numerical investigation of a PCM-based heat sink with internal fins

机译:带有内部散热片的基于PCM的散热器的数值研究

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The present study explores numerically the process of melting of a phase-change material (PCM) in a heat storage unit with internal fins open to air at its top. Heat is transferred to the unit through its horizontal base, to which vertical fins made of aluminum are attached. The phase-change material is stored between the fins. Its properties used in the simulations, including the melting temperature of 23-25℃, latent and sensible specific heat, thermal conductivity and density in solid and liquid states, are based on a commercially available paraffin wax. A detailed parametric investigation is performed for melting in a relatively small system, 5-10 mm high, where the fin thickness varies from 0.15 mm to 1.2 mm, and the thickness of the PCM layers between the fins varies from 0.5 mm to 4 mm. The ratio of the PCM layer to fin thickness is held constant. The temperature of the base varies from 6℃ to 24℃ above the mean melting temperature of the PCM. Transient three- and two-dimensional simulations are performed using the Fluent 6.0 software, yielding temperature evolution in the fins and the PCM. The computational results show how the transient phase-change process, expressed in terms of the volume melt fraction of the PCM, depends on the thermal and geometrical parameters of the system, which relate to the temperature difference between the base and the mean melting temperature, and to the thickness and height of the fins. In search for generalization, dimensional analysis of the results is performed and presented as the Nusselt numbers and melt fractions vs. the Fourier and Stefan numbers and fin parameters. In some cases, the effect of Rayleigh number is significant and demonstrated.
机译:本研究从数值上探索了相变材料(PCM)在储热单元中熔化的过程,该储热单元的内部散热片在顶部敞开。热量通过其水平基座传递到该单元,铝制垂直散热片连接到该单元。相变材料存储在散热片之间。在模拟中使用的特性(包括23-25℃的熔化温度,潜热和显着的比热,固态和液态的导热率和密度)是基于可商购的石蜡。对于在5-10毫米高的相对较小的系统中进行熔化进行的详细参数研究,其中鳍片的厚度在0.15毫米至1.2毫米之间变化,而鳍片之间的PCM层的厚度在0.5毫米至4毫米之间变化。 PCM层与鳍片厚度的比率保持恒定。基材的温度比PCM的平均熔化温度高6到24℃。使用Fluent 6.0软件进行了瞬态3维和二维仿真,从而在散热片和PCM中产生了温度变化。计算结果表明,以相变材料的体积熔体分数表示的瞬态相变过程如何取决于系统的热学和几何学参数,该参数与基体温度和平均熔化温度之间的温差有关,以及鳍的厚度和高度。为了寻求一般性,对结果进行了尺寸分析,并表示为Nusselt数和熔体分数与Fourier和Stefan数以及鳍参数的关系。在某些情况下,瑞利数的影响是显着的并得到证明。

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