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Large-Scale Experimental Wind-Driven Rain Exposure Investigations of Building Integrated Photovoltaics

机译:大规模实验风驱雨曝光调查建筑一体化光伏发电

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摘要

Building integrated photovoltaics (BIPVs) are photovoltaic materials that replace conventional building materials in parts of the building envelopes, such as roofs or facades, i.e. the BIPV system serves dual purposes, as both a building envelope material and a power generator. Hence, it is important to focus on the building envelope properties of a BIPV system in addition to energy generation performance when conducting experimental investigations of BIPVs. The aim of this work was to illustrate challenges linked to the building envelope properties of a BIPV system, and to develop and evaluate relevant methods for testing the building envelope properties of BIPV systems.A sample roof area with two BIPV modules was built and tested in a turnable box for rain and wind tightness testing of sloping building surfaces with the aim of investigating the rain tightness of the BIPV system, and observing how it withstood wind-driven rain at large-scale conditions. The BIPV sample roof went through testing with run-off water and wind-driven rain with incremental pulsating positive differential pressure over the sample at two different inclinations. The BIPV sample roof was during testing constantly visually monitored, and various leakage points were detected. In order to prevent such water penetration, the steel fittings surrounding the BIPV modules should ideally be better adapted to the BIPV modules and constricted to some extent. It is however important to maintain a sufficient ventilation rate simultaneously.
机译:建筑物集成光伏(BIPV)是一种光伏材料,可代替建筑物围护结构部分(例如屋顶或外墙)中的常规建筑材料,即BIPV系统既可以用作建筑物围护结构材料又可以用作发电机。因此,重要的是在进行BIPV的实验研究时,除了能源发电性能外,还要重点关注BIPV系统的建筑围护结构特性。这项工作的目的是说明与BIPV系统的建筑围护结构性能相关的挑战,并开发和评估用于测试BIPV系统的建筑围护结构性能的相关方法。一个可旋转的盒子,用于对倾斜的建筑表面进行防雨和防风测试,目的是调查BIPV系统的防雨性,并观察其在大范围条件下如何抵御风雨。 BIPV样品顶板经过径流水和风雨试验,并在两个不同的倾斜度下对样品施加了增量脉动正压差。在测试过程中不断监控BIPV样品顶板,并检测到各种泄漏点。为了防止这种水渗透,理想情况下,BIPV模块周围的钢制配件应更好地适应BIPV模块并在一定程度上受到限制。但是,同时保持足够的通风率很重要。

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