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Establishing a Typical Solar Radiation Year Time Series for the Application of Building Integrated Photovoltaic Systems in Taiwan

机译:建立典型的太阳辐射年时间序列,以供台湾建筑集成光伏系统应用

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Photovoltaic modules are increasingly being utilized in building envelopes for green energy generation purposes. While photovoltaic modules are integrated into building envelope design, the modules will not often be facing south and are frequently mounted vertically. The radiation efficiency of photovoltaic modules is important to the optimization of Building Intergraded Photovoltaic Systems (BiPV). The energy generation efficiency of BiPV system relies much on the panel surface solar radiation received. It is important for architects to estimate the annual energy generated by their BiPV design schemes. The purpose of this paper is to develop a typical hourly solar radiation year to facilitate the estimation process. The typical solar radiation year should be subject to local long-term climate variations, thus, ten years' hourly meteorological data was gathered to formulate a typical year by means of a series of statistical processes. A total of three cities' typical hourly years from northern to southern Taiwan were established in this paper. Furthermore, a software tool for calculating cumulative yearly generated energy on every panel inclinations and orientations of BiPV modules was also developed to help building designers facilitate the evaluation and optimization of the BiPV system.
机译:光伏模块正越来越多地用于建筑围护结构中以产生绿色能源。尽管将光伏模块集成到建筑物围护结构设计中,但这些模块不会经常朝南,而是经常垂直安装。光伏模块的辐射效率对于优化建筑物级联光伏系统(BiPV)至关重要。 BiPV系统的能量产生效率在很大程度上取决于接收到的面板表面太阳辐射。对于建筑师而言,估算其BiPV设计方案产生的年能源非常重要。本文的目的是开发一个典型的每小时太阳辐射年,以方便估算过程。典型的太阳辐射年应受当地长期气候变化的影响,因此,通过一系列统计过程,收集了十年的每小时气象数据以制定典型的年。本文确定了从台湾北部到南部三个城市的典型小时小时数。此外,还开发了一种软件工具,用于计算BiPV组件在每个面板倾斜度和方向上的累积年发电量,以帮助建筑设计师促进BiPV系统的评估和优化。

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