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Experimental determination of the forced-convection gas-to-wall heat transfer coefficient in a packed bed for high temperature thermal energy storage

机译:实验测定高温热能储存堆积床中强制对流气体传热系数的实验

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Measurements of the gas-to-wall forced convection heat transfer coefficient in a packed bed, high-temperature, thermal energy storage system were carried out. The maximum temperature attained was 1000°C. Effects of media property variations with temperature were incorporated along with detailed uncertainty analysis. Results were correlated in terms of Nusselt number, Prandtl number and Reynolds number. The operating fluid during energy storage was flue gas and air during recovery, making this more applicable to industrial waste recovery and similar systems. Similar studies used air for both storage and recovery and developed correlations from experiments at either room temperature or slightly above. Few associated results with corresponding uncertainty margins. Due to substantial uncertainties associated with the measurements of this heat transfer coefficient, it is significant to note that no firm conclusions can be reached on the validity or otherwise of existing similar correlations for which the uncertainty margins were not reported.
机译:进行了填充床,高温,热能存储系统中的气体到壁强制对流传热系数的测量。达到的最高温度为1000℃。介质性能变化与温度的影响以及详细的不确定性分析。结果与NUSERET号码,PRANDTL号码和雷诺数相关。在储存期间的操作流体在恢复过程中烟气和空气,使得这更适用于工业废物回收和类似的系统。类似的研究使用空气用于储存和恢复,并从一个室温或略微上方的实验产生相关性。少数相关结果与相应的不确定性边距。由于与该传热系数的测量相关的实质性不确定性,重要的是要注意,可以在没有报告不确定性边距的现有类似相关性的有效性或其他情况下达到任何牢固的结论。

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