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Experimental heat transfer coefficients between a surface and fixed and fluidized beds with PCM

机译:用pCm表面和固定床和流化床之间的实验传热系数

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摘要

This work presents an experimental study to determine the capacity of a phase change material (PCM) in granular form to be used in fixed and bubbling fluidized beds for thermal energy storage. The experimental measurements are focused on determination of the heat transfer coefficient between a heated surface immersed in the bed and the granular PCM. The flow rate is varied to quantify its influence on the heat transfer coefficient. The PCM used is Rubitherm GR50 with a phase change temperature of approximately 50° C. The PCM is available in two different particle sizes, 0.54 mm and 1.64 mm, of which the finer is used in the fluidized bed and the coarser is used in the fixed bed. In addition, the results obtained for the PCM are compared with the heat transfer coefficients measured for sand, a material commonly used for thermal storage. In comparing the heat transfer coefficients for fixed and fluidized beds, the heat transfer coefficients in the fluidized bed with PCM are nearly three times higher than those for the fixed bed at the same gas flow rate. This increase in the heat transfer is a result of two main factors: first, the continuous renewal of PCM particles from the heated surface when they are fluidized, and second, the large quantities of energy in latent form absorbed by the PCM. In the fixed bed there is no renovation of particles, consequently only a small percentage of particles are able to change its phase. Hence, there is no increase in the heat transfer coefficient due to this fact.
机译:这项工作提出了一项实验研究,以确定颗粒状相变材料(PCM)在固定和鼓泡流化床中用于热能存储的能力。实验测量集中在确定浸入床中的加热表面与粒状PCM之间的传热系数。改变流量以量化其对热传递系数的影响。所用的PCM是Rubitherm GR50,其相变温度约为50°C。PCM有两种不同的粒径:0.54 mm和1.64 mm,其中更细的颗粒用于流化床中,而较粗的颗粒用于流化床中。固定的床。此外,将PCM获得的结果与沙子(一种通常用于蓄热的材料)的传热系数进行比较。在比较固定床和流化床的传热系数时,在相同的气体流速下,带PCM的流化床的传热系数几乎是固定床的传热系数的三倍。传热的增加是由于两个主要因素造成的:首先,当PCM颗粒流化时,PCM颗粒会从受热表面连续更新;其次,PCM会吸收大量潜在形式的能量。在固定床中,没有颗粒的翻新,因此只有一小部分颗粒能够改变其相。因此,由于这一事实,传热系数没有增加。

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