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光伏建筑一体化技术在智慧低碳大楼中的应用与实践

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对成都SADI智慧楼宇光伏建筑一体化改造进行了探索分析,并将光伏建筑一体化技术应用于智慧低碳大楼项目.从应用技术和建筑设计 2 个层面对光伏建筑一体化进行了较为深入的研究.在应用技术层面,介绍了光伏技术的基本原理和光伏电池的基本性能,在此基础上探讨了光伏系统应用于建筑物的基本设计要点和方式;在建筑设计层面,从设计方法、材料选择和空间打造等多个角度讨论了光伏建筑一体化与建筑设计的关系.在电气方面,11 月单晶硅、碲化镉(黑色)、铜铟镓硒(黑色)、碲化镉(橙色)组件的日均峰值日照时数依次递减;12 月单晶硅、铜铟镓硒(黑色)、碲化镉(黑色)、碲化镉(橙色)组件的日均峰值日照时数依次递减.
Application and practice of building integrated photovoltaic technology in smart low-carbon buildings
Through the exploration and analysis of Chengdu SADI smart building photovoltaic building integration transformation,the application of building integrated photovoltaic(BIPV)was applied in smart low-carbon building.A comprehensive examination of BIPV at both the technological application and architectural design levels was conducted.On the application front,the basic principles of photovoltaic technology and fundamental properties of photovoltaic cells were introduced,laying the groundwork for discussing the basic design considerations and application methods of photovoltaic systems in buildings.At the architectural design level,the relationship between BIPV and building design was discussed from multiple perspectives,including design approaches,material selection,and spatial configuration.Electrically,the average daily peak sunshine hours of monocrystalline silicon,cadmium telluride(black),copper indium gallium selenide(black),and cadmium telluride(orange)components in November decrease in sequence.The average daily peak sunshine hours of monocrystallime silicon,copper indium gallium selenide(black),cadmium telluride(black),and cadmium telluride(orange)components in December decrease in sequence.

building integrated photovoltaic(BIPV)photovoltaic modulephotovoltaic system applicationsmart buildingpeak sunshine hour

卿鹏、黄璋、彭文颢、蒋锐、黄珺珂、赵红蕾

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四川省建筑设计研究院有限公司,四川 成都 610000

光伏建筑一体化 光伏组件 光伏系统应用 智慧楼宇 峰值日照时数

2024

四川建筑科学研究
四川省建筑科学研究院

四川建筑科学研究

影响因子:0.422
ISSN:1008-1933
年,卷(期):2024.50(5)