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Optimization of photovoltaic-thermal (PVT) based cogeneration system through water replenishment profile

机译:通过补水曲线优化基于光伏热(PVT)的热电联产系统

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摘要

A photovoltaic thermal (PVT) system is a renewable cogeneration system that produces low temperature heat and electricity simultaneously from solar radiation. In water based PVT systems, as the thermal load is served, storage tank is replenished immediately with cold makeup water. However, it is possible to determine an optimal water replenishment profile to optimize the overall configuration of PVT system. In this paper, effects of water replenishment on PVT system sizing are studied. At first, the problem is modeled as a mixed integer non-linear programming problem to analyze the impact of water replenishment on PVT system sizing. Subsequently, the design space approach is used to analyze the significance of water replenishment strategy on the PVT system configuration. Finally, based on analytical derivation, an approximate water replenishment profile is determined and its practical implementation strategies are discussed. Applicability of the proposed methodologies is demonstrated through sizing PVT systems for residential as well as industrial hot water usage patterns. Significant reductions in both collector area (10% for residential example and 7% for industrial example) and storage volume (66% for residential example and 23% for industrial example) are observed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:光伏热(PVT)系统是可再生的热电联产系统,可通过太阳辐射同时产生低温热和电。在水基PVT系统中,由于提供了热负荷,因此会立即为储罐补充冷的补给水。但是,可以确定最佳的补水曲线以优化PVT系统的整体配置。本文研究了补水对PVT系统尺寸的影响。首先,将该问题建模为混合整数非线性规划问题,以分析补水对PVT系统规模的影响。随后,使用设计空间方法来分析补水策略对PVT系统配置的重要性。最后,在分析推导的基础上,确定了近似的补水曲线,并讨论了其实际实施策略。通过确定用于住宅以及工业热水使用模式的PVT系统的规模,可以证明所提出方法的适用性。观察到收集器面积(住宅示例为10%,工业示例为7%)和存储量(住宅示例为66%,工业示例为23%)均大大减少。 (C)2016 Elsevier Ltd.保留所有权利。

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