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Two performance indices of TES apparatus : comparison of MPCM slurry vs. stratified water storage tank

机译:TES设备的两个性能指标:MPCM浆料与分层储水罐的比较

摘要

Microencapsulated phase change material (MPCM) slurry, which has a higher thermal storage capacity than water, was introduced as a storage medium in a coil-in-tank, but the key question is whether a competitive charging/discharging rate could be achieved. In this paper, two key indices, the volumetric thermal storage capacity at a given temperature difference and the charging/discharging rate variation over time, are newly defined. From the experimental results, it is estimated that the volumetric thermal storage capacity of the MPCM slurry is nearly twice that of water in the temperature range of 8-18 °C. Finally, the overall heat transfer coefficient of the slurry storage device as a shell-tube heat exchanger was measured, and the external average convective heat transfer coefficient was also calculated. The two coefficients exhibited visible peaks during the phase change process with high-speed stirring and were much higher than that of water. However, the overall charging/discharging rates of the MPCM storage tank were observed to be much lower than the idealized stratified water storage tank (SWST), indicating that the design of an MPCM slurry thermal storage device needs to be further optimized.
机译:具有比水更高的储热能力的微囊化相变材料(MPCM)浆料被引入罐内线圈中作为存储介质,但是关键问题是能否实现具有竞争力的充电/放电速率。本文中,新定义了两个关键指标,即给定温度差下的蓄热容量和随时间的充放电速率变化。从实验结果估计,在8-18°C的温度范围内,MPCM浆料的体积储热能力几乎是水的两倍。最后,测量了作为壳管式热交换器的浆料存储装置的总传热系数,并且还计算了外部平均对流传热系数。在高速搅拌的相变过程中,这两个系数显示出可见的峰值,远高于水的峰值。然而,观察到MPCM储罐的总充放电速率比理想化分层水储罐(SWST)低得多,这表明MPCM浆料储热装置的设计需要进一步优化。

著录项

  • 作者

    Zhang S; Niu J;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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