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Influencing factors on the energy saving performance of battery storage and phase change cold storage in a PV cooling system

机译:影响光伏制冷系统中蓄电池和相变冷库节能性能的因素

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Energy storage is desirable in photovoltaic (PV) cooling systems to maintain service during solar outages and to supply peak cooling loads. Energy storage may be supplied using battery storage to conserve surplus electricity produced by solar panels, or cold thermal storage to store excess cooling capacity generated by a chiller. In this study, the energy saving performance of a residential solar cooling system is investigated in three distinct climates (Madrid, Shanghai, and Brisbane). The system is provided with either battery energy storage or cold storage and these cases are compared to the case where no energy storage is provided at all. The investigation is conducted by software modeling in TRNSYS. The cold storage case simulates phase-change energy stores using ice, eutectic of capric acid and lauric acid, and CO2 clathrate hydrate. The energy saving metric is the primary energy saving ratio (PESR). A sensitivity study is conducted on the effect of the cooling load, chilled water set-point, chiller COP, storage capacity on the PESR of each storage approach. We conclude that the CO2 clathrate hydrate was the best performing cold store and this approach provided credible savings compared to a system without energy storage. However, in most cases, battery storage provided superior primary energy savings than the cold storage. (C) 2015 Elsevier B.V. All rights reserved.
机译:光伏(PV)冷却系统中需要能量存储,以在太阳能中断期间维持服务并提供峰值冷却负荷。可以使用电池存储来保存太阳能电池板产生的多余电量,或者使用冷热存储来存储冷水机组产生的多余冷却能力来提供能量存储。在这项研究中,研究了住宅太阳能制冷系统在三种不同气候(马德里,上海和布里斯班)的节能性能。该系统配备有电池储能或冷库,并且将这些情况与根本不提供储能的情况进行了比较。该调查是通过TRNSYS中的软件建模进行的。冷库案例使用冰,癸酸和月桂酸的低共熔物以及CO2笼形水合物来模拟相变储能。节能指标是主要节能比(PESR)。针对每种存储方式的冷却负荷,冷冻水设定点,冷却器COP,存储容量对PESR的影响进行了敏感性研究。我们得出的结论是,二氧化碳笼形水合物是性能最佳的冷库,与没有储能的系统相比,这种方法可节省大量成本。但是,在大多数情况下,电池存储提供的主要一次能源节省要高于冷藏。 (C)2015 Elsevier B.V.保留所有权利。

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