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Performance evaluation of self-cooling concentrating photovoltaics systems using nucleate boiling heat transfer

机译:用核沸腾热传递进行自冷却浓缩光伏系统的性能评价

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In this study, nucleate boiling heat transfer (NBHT) based self-cooling thermal management system is designed and thermodynamically analyzed for high concentrating photovoltaics (CPV). The overall selfcooling system, consisting of two rows of CPV i.e. CPV 1 and CPV 2, iscoupled with the absorption cooling (AbC) system. Thermal energy from CPV 1 is supplied to AbC system to produce cooling, which is then used to reduce the temperature of CPV 2. Both CPV systems work simultaneously under the same solar energy conditions, hence, the demand and supply of energy are continuously in phase. Under the designed conditions, CPV 1, with an installed capacity of 66.4 kW, an operating temperature of 375.3 K and electrical efficiency of 35.5%, has the ability to cool down about 50.6 kW of CPV 2 system with an operating temperature of 335.8 K and 37.5% of electrical efficiency. A parametric study is performed to analyze the performance of the overall system at various working conditions and installed capacities. Furthermore, the designed system is analyzed for two different types of multi-junction solar cells and three different types of coolants: water, ethanol, and n-pentane. Due to higher latent heat, water has been proven to perform better working fluid with higher ability of concentration ratio. The optimum NBHT operating temperatures for CPV1 and CPV2 were found to be about 353 K and 349 K with maximum overall system efficiency of 36.64%. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本研究中,为高浓缩光伏(CPV)设计和热力学分析了基于核心沸腾的热传递(NBHT)的自冷却热管理系统。整个自脱机系统,由两排CPV I. CPV 1和CPV 2组成,与吸收冷却(ABC)系统呈绕组。来自CPV 1的热能供应到ABC系统以产生冷却,然后用于降低CPV 2的温度.CPV系统在相同的太阳能条件下同时工作,因此,能量的需求和供应在相位中连续工作。在设计的条件下,安装容量为66.4千瓦的CPV 1,工作温度为375.3 k,电效率为35.5%,具有高约50.6kW的CPV 2系统,工作温度为335.8 k和37.5%的电效率。进行参数研究以分析整个系统在各种工作条件下的性能和安装的能力。此外,分析了设计的两种不同类型的多结太阳能电池和三种不同类型的冷却剂:水,乙醇和正戊烷。由于潜热较高,已被证明水进行更好的工作流体,具有较高的浓度比。发现CPV1和CPV2的最佳NBHT工作温度为约353 k和349 k,总整体系统效率为36.64%。 (c)2020 elestvier有限公司保留所有权利。

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