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Performance Optimization of Unglazed Nanofluid Photovoltaic/Thermal System: Energy and Exergy Analyses

机译:无铅纳米流体光伏/热系统的性能优化:能量和漏洞分析

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The focus of this paper is to predict the transient response of a nanoengineered photovoltaic thermal (PV/T) system in view of energy and exergy analyses. Instead of a circular-shaped receiver, a trapezoidal-shaped receiver is employed to increase heat transfer surface area with photovoltaic (PV) cells for improvement of heat extraction and thus achievement of a higher PV/T system efficiency. The dynamic mathematical model is developed using MATLAB (R) software by considering real-time heat transfer coefficients. The proposed model is validated with experimental data from a previous study. Negligible discrepancies were found between measured and predicted data. The validated model was further investigated in detail using different nanofluids by dispersing copper oxide (CuO) and aluminum oxide (Al2O3) in pure water. The overall performance of the nanoengineered PV/T system was compared to that of a PV/T system using water only, and optimal operating conditions were determined for maximum useful energy and exergy rates. The results indicated that the CuO/water nanofluid has a notable impact on the energy and exergy efficiencies of the PV/T system compared to that of Al2O3/water nanofluid and water only cases.
机译:本文的焦点是预测纳米工程光伏热(PV / T)系统的瞬态响应考虑到能量和漏洞分析。代替圆形接收器,采用梯形形接收器来增加具有光伏(PV)电池的传热表面积,以改善热提取,从而实现更高的PV / T系统效率。通过考虑实时传热系数,使用MATLAB(R)软件开发动态数学模型。所提出的模型用来自先前研究的实验数据验证。测量和预测数据之间发现了可忽略的差异。通过将氧化铜(CuO)和氧化铝(Al 2 O 3)分散在纯水中,进一步使用不同的纳米流体进一步详细研究了验证的模型。将纳米工程PV / T系统的整体性能与仅使用水的PV / T系统的整体性能进行了比较,并且确定了最佳的操作条件以获得最大的有用能量和低级速率。结果表明,与Al2O3 /水纳米流体和水的情况相比,CuO /水纳米流体对PV / T系统的能量和暴力效率产生了显着的影响。

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