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Review of air-based PV/T and BIPV/T systems - Performance and modelling

机译:述评空气的PV / T和BIPV / T系统 - 性能和建模

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摘要

This article presents a review of the monitored performance of air-based photovoltaic/thermal (PV/T) and building integrated photovoltaic/thermal (BIPV/T) systems, as well as the relevant system modelling with focus on the convective phenomena.The review showed that the majority of experimental studies involve small-scale PV/T prototypes of the stand-alone format, usually tested under conditions that are not representative of full-scale BIPV/T systems, while the cases of instrumented full-scale BIPV/T systems are very few. The varying testing conditions render a direct performance comparison of the various systems difficult, while the convective phenomena may exhibit significantly different behavior depending on the system type and size. Additionally, different expressions used to model wind-driven and channel convection may introduce significant uncertainty in the predicted performance of such systems. These inconsistencies in both the monitored and modelled performance contribute to a reduced confidence in such systems and a resulting small number of realized applications.The purpose of this review is to identify the relevant research needs pertinent to PV/T and BIPV/T testing and modelling, and in doing so provide a framework that can set the foundation for standardized testing, as well as modelling at different design stages. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了空气基光伏/热(PV / T)的监测性能,以及建设集成光伏/热(BIPV / T)系统,以及关注对流现象的相关系统建模。审查表明,大多数实验研究涉及单独单独格式的小规模PV / T原型,通常在不代表全级BIPV / T系统的条件下进行测试,而仪器满量程BIPV / T的情况系统很少。不同的测试条件使各种系统的直接性能比较难以,而对流现象可能根据系统类型和尺寸表现出显着不同的行为。另外,用于模拟风力驱动和信道对流的不同表达可以在这种系统的预测性能中引入显着的不确定性。受监控和建模性能的这些不一致有助于减少对此类系统的信心减少,并产生少量的实现应用。本综述目的是识别与PV / T和BIPV / T测试和建模相关的相关研究需求此外,此外,提供了一个可以为标准化测试的基础提供标准化测试的框架,以及在不同的设计阶段建模。 (c)2020 elestvier有限公司保留所有权利。

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