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Optimization of a solar cascaded phase change slab-plate heat exchanger thermal storage system

机译:太阳级联相变板换热器热存储系统的优化

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Thermal storage is a key element to stable usage of globally distributed solar energy. Phase charge materials (PCMs) are the most effective materials for high efficiency thermal energy storage. Slab plate heat exchangers are technical and cost beneficial tanks in order to practically store solar thermal energy, using PCMs. In this study, configuration of a slab plate heat exchanger, was analyzed by two dimensional numerical model using effective heat capacity method. Air and commercial paraffin based materials RT50, RT65 and RT80 were used as heat transfer fluid and PCM respectively. The model was verified with the experimental data. In order to take the real ambient situations into account, a solar collector was modeled for hot air inlet to the energy storage unit during winter (coldest day of winter selected for study). The effect of HTF inlet temperature, flow rate and density of PCM on the thermal behavior of the energy storage unit was analyzed. Multiple-PCM (cascaded) unit with variable slab plate thicknesses was studied as optimization case with charging and charging-discharging cycles as two different approaches. Optimal order of PCMs inside the energy storage unit and the thickness distribution of slab plates were reported as the optimization results. Multiple-PCM energy storage unit has improved the average thermal performance of the energy storage by 12% compared to the single-PCM energy storage unit in the winter.
机译:热存储是全球分布太阳能稳定使用的关键元素。相电压材料(PCM)是高效热能储存的最有效材料。板块换热器是技术性的,具有成本的有益速度,以便使用PCMS实际存储太阳能热能。在该研究中,使用有效的热容量法通过二维数值模型分析板板热交换器的构造。空气和商业石蜡基材料RT50,RT65和RT80分别用作传热流体和PCM。使用实验数据验证该模型。为了考虑真正的环境情况,在冬季(选择用于学习的冬季最冷的冬季)的储能单元的热空气入口建模太阳能收集器。分析了HTF入口温度,PCM对能量存储单元的热行为的影响。使用可变板板厚度的多PCM(级联)单元作为优化壳体,充电和充电循环作为两种不同的方法。储能单元内PCM的最佳顺序以及板块板的厚度分布作为优化结果。与冬季单PCM能量存储单元相比,多PCM储能单元通过12%提高了能量存储的平均热性能。

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