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A novel solar trigeneration system based on concentrating photovoltaic/thermal collectors. Part 1: Design and simulation model

机译:一种基于聚光光伏/集热器的新型太阳能三联产系统。第1部分:设计和仿真模型

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摘要

This paper analyzes the thermodynamic performance of high-temperature PhotoVoltaic/Thermal {PVT) solar collectors. The collector is based on a combination of a parabolic dish concentrating solar thermal collector and a high efficiency solar photovoltaic collector. The PVT system under investigation allows one to produce simultaneously electrical energy and high-temperature thermal energy by solar irradiation. The main aim of this study is the design and the analysis of a concentrating PVT which is able to operate at reasonable electric and thermal efficiency up to 180 C. In fact, the PVT is designed to be integrated in a Solar Heating and Cooling system and it must drive a two-effect absorption chiller. This capability is quite new since conventional PVT collectors usually operate below 45 C. Among the possible high-temperature PVT systems, this paper is focused on a system consisting in a dish concentrator and in a triple-junction PV layer. In particular, the prototype consists in a parabolic dish concentrator and a planar receiver. The system is equipped with a double axis tracking system. The bottom surface of the receiver is equipped with triple-junction silicon cells whereas the top surface is insulated. In order to analyze the performance of the Concentrating PVT(CPVT) collector a detailed mathematical model was implemented. This model is based on zero-dimensional energy balances on the control volumes of the system. The simulation model allows one to calculate in detail the temperatures of the main components of the system (PV layer, concentrator, fluid inlet and outlet and metallic substrate) and the main energy flows (electrical energy, useful thermal energy, radiative losses, convective losses). The input parameters of the model include all the weather conditions (temperature, insolation, wind velocity, etc.) and the geometrical/material parameters of the systems (lengths, thermal resistances, thicknesses, etc.). Results showed that both electrical and thermal efficiencies are very good in a wide range of operating conditions. The study also includes a comprehensive sensitivity analysis in which the main design variables were varied in order to evaluate the related variations of both electrical and thermal efficiencies.
机译:本文分析了高温光伏/热(PVT)太阳能集热器的热力学性能。该收集器是基于抛物面碟形集热太阳能收集器和高效太阳能光伏收集器的组合。正在研究的PVT系统允许通过太阳辐射同时产生电能和高温热能。这项研究的主要目的是对聚光PVT进行设计和分析,该聚光PVT能够在高达180 C的合理电和热效率下运行。实际上,该PVT被设计为集成在太阳能加热和冷却系统中,并且它必须驱动一个两效吸收式制冷机。由于常规的PVT收集器通常在低于45 C的温度下运行,因此此功能相当新。在可能的高温PVT系统中,本文重点研究由碟形浓缩器和三结PV层组成的系统。特别地,该原型包括抛物面碟形浓缩器和平面接收器。该系统配备了双轴跟踪系统。接收器的底面装有三结硅电池,而顶面是绝缘的。为了分析浓缩PVT(CPVT)收集器的性能,实施了详细的数学模型。该模型基于系统控制量上的零维能量平衡。该仿真模型可以详细计算系统主要组件(PV层,聚光器,流体入口和出口以及金属基底)的温度以及主要能量流(电能,有用的热能,辐射损耗,对流损耗) )。模型的输入参数包括所有天气条件(温度,日照,风速等)和系统的几何/材料参数(长度,热阻,厚度等)。结果表明,在广泛的工作条件下,电效率和热效率均非常好。该研究还包括全面的灵敏度分析,在其中进行了主要设计变量的变化以评估电效率和热效率的相关变化。

著录项

  • 来源
    《Energy》 |2013年第1期|59-71|共13页
  • 作者单位

    DETEC Univ. of Naples Federico Ⅱ, P.le Tecchio 80, 80125 Naples, Italy;

    DETEC Univ. of Naples Federico Ⅱ, P.le Tecchio 80, 80125 Naples, Italy;

    DETEC Univ. of Naples Federico Ⅱ, P.le Tecchio 80, 80125 Naples, Italy;

    DIT Univ. of Naples "Parthenope" Centra Direzionale IS.C4, 80143 Naples, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PVT; Triple-junction; Solar energy;

    机译:PVT;三结;太阳能;

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