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Energy saving potential of a ventilation system with a latent heat thermal energy storage unit under different climatic conditions

机译:不同气候条件下带有潜热蓄热单元的通风系统的节能潜力

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Ventilation system with a latent heat thermal energy storage (LHTES) unit can be used to reduce building energy consumption, which stores the coldness of nighttime outdoor air in the LHTES unit and releases it to cool the fresh air during the daytime. The potential energy saving through the use of the system over a conventional ventilation system, however, has seldom been quantitatively evaluated. This study develops and validates a computational heat transfer model of the system, which takes into account two-dimensional heat transfer in phase change material (PCM). The effect of PCM melting temperature on the melted fraction of LHTES unit is investigated to determine the optimum melting.temperature. This study then calculates and evaluates the energy saving potential of the LHTES system in summer for eight cities located in four different climate zones of China. The energy saving potential is assessed in terms of cooling energy supply, cooling energy supply ratio, net electricity saving and electricity saving ratio. The results show that the seasonal average cooling energy supply ratio varies from 39% to 194%, with a mean value of 85%, and the seasonal average electricity saving ratio ranges from 26% to 165%, with a mean value of 68%. (C) 2016 Elsevier B.V. All rights reserved.
机译:可以使用带有潜热热能存储(LHTES)单元的通风系统来减少建筑能耗,该系统将夜间室外空气的寒冷存储在LHTES单元中,并在白天释放出来以冷却新鲜空气。但是,相对于常规通风系统,通过使用该系统所节省的潜在能源很少进行定量评估。这项研究开发并验证了系统的计算传热模型,该模型考虑了相变材料(PCM)中的二维传热。研究了PCM熔化温度对LHTES单元熔化分数的影响,以确定最佳熔化温度。然后,本研究针对位于中国四个不同气候区的八个城市,计算并评估了LHTES系统在夏季的节能潜力。根据冷却能量供应,冷却能量供应率,净节电量和节电率来评估节能潜力。结果表明,季节平均制冷供能比在39%至194%之间,平均值为85%,季节平均节电率在26%至165%之间,平均值为68%。 (C)2016 Elsevier B.V.保留所有权利。

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