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IEA PVPS:2022年全球BIPV数字化设计工作流程和方法调查报告(中译版)(111页).pdf

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1、 BIPV Digitalization:Design Workflows and Methods A Global Survey 2022 PVPS Report IEA-PVPS T15-14:2022 Task 15 Enabling Framework for the Development of BIPV Task 15 Enabling Framework for the Development of BIPV BIPV Digitalization:Design Workflows and Methods What is IEA PVPS TCP?The Internationa

2、l Energy Agency(IEA),founded in 1974,is an autonomous body within the framework of the Organization for Economic Cooperation and Development(OECD).The Technology Collaboration Programme(TCP)was created with a belief that the future of energy security and sustainability starts with global collaborati

3、on.The programme is made up of 6.000 experts across government,academia,and industry dedicated to advancing common research and the application of specific energy technologies.The IEA Photovoltaic Power Systems Programme(IEA PVPS)is one of the TCPs within the IEA and was established in 1993.The miss

4、ion of the programme is to“enhance the international collaborative efforts which facilitate the role of photovoltaic solar energy as a cornerstone in the transition to sustainable energy systems.”In order to achieve this,the Programmes participants have undertaken a variety of joint research project

5、s in PV power systems applications.The overall programme is headed by an Executive Committee,comprised of one delegate from each country or organisation member,which designates distinct Tasks,that may be research projects or activity areas.The IEA PVPS participating countries are Australia,Austria,C

6、anada,Chile,China,Denmark,Finland,France,Germany,Israel,Italy,Japan,Korea,Malaysia,Morocco,the Netherlands,Norway,Portugal,South Africa,Spain,Sweden,Switzerland,Thailand,Turkey,and the United States of America.The European Commission,Solar Power Europe,the Smart Electric Power Alliance(SEPA),the Sol

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本文主要研究了建筑一体化光伏(BIPV)设计中的工作流程和方法。研究通过问卷调查的方式,收集了来自欧洲、亚洲、大洋洲、北美洲和南美洲的80名建筑、工程和建设(AEC)及BIPV行业专业人士的反馈。研究结果表明,在BIPV设计过程中,各地区对工作流程和方法的偏好相似,但大多数受访者对估算光伏阵列平面(POA)、发电量、碳排放、热岛效应、热舒适度、采光、结构和安全要求的方法和模型缺乏了解。因此,需要对这些方法进行研究和开发。研究还发现,BIPV特定的软件或设计流程可以促进BIPV的设计和分析,从而提高高效、经济型BIPV项目的采用率。此外,研究还指出,当前的BIPV设计和分析方法可以应用于建筑环境,但在城市环境中探索BIPV的影响需要进一步的研究。
BIPV设计流程中常用的方法有哪些? BIPV设计中如何考虑经济和环境因素? 哪些因素影响BIPV项目的成功实施?
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