Performance Evaluation of the Wall-Type BIPV System Based on the Energy Consumption Unit - A Study for University Lecture Building -
Kang-Guk Lee, Won-Duck Seo, Won‐Hwa Hong
Abstract
Kang-Guk Lee, Won-Duck Seo, Won‐Hwa Hong
Abstract
The building integrated photovoltaic(BIPV) system has a double advantage that it reduces costs for exterior materials and PV panels. It allows the construction of a low-energy building without the need for the additional installation space. At the construction planning stage, however, it requires sufficient evaluation on the efficiency and performance. This study was performed to promote the distribution of photovoltaic power generation system by estimating the potential photovoltaic power generation capacity of the BIPV system installed on the university lecture building and by evaluating the characteristics and performances of window, spandrel and combined attachment types via the simulation of generation capacity per unit area.
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The building integrated photovoltaic(BIPV) system has a double advantage that it reduces costs for exterior materials and PV panels. It allows the construction of a low-energy building without the need for the additional installation space. At the construction planning stage, however, it requires sufficient evaluation on the efficiency and performance. This study was performed to promote the distribution of photovoltaic power generation system by estimating the potential photovoltaic power generation capacity of the BIPV system installed on the university lecture building and by evaluating the characteristics and performances of window, spandrel and combined attachment types via the simulation of generation capacity per unit area.
Key concepts: Building-integrated photovoltaics, Photovoltaic system, Photovoltaic mounting system, Electricity generation, Architectural engineering, Energy consumption, Rooftop photovoltaic power station, Engineering