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首页> 外文期刊>Advances in building energy research >BIPV: building envelope solutions in a multi-criteria approach. A method for assessing life-cycle costs in the early design phase
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BIPV: building envelope solutions in a multi-criteria approach. A method for assessing life-cycle costs in the early design phase

机译:BIPV:以多标准方法构建信封解决方案。在早期设计阶段评估生命周期成本的方法

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The increasing demand for nearly zero energy buildings is rapidly contributing to changing the design criteria in architecture and concept of the building envelope. Today, photovoltaics (PV) is one of the most reliable technologies for integration in the built environment, and building-integrated photovoltaics (BIPV) is introducing a different notion of 'energy integrability' into practice. The difficulty of undertaking, from the first design stages, a really integrative approach towards energy (PV and building requirements) is today still one of the strongest barriers to the rise of the BIPV market. Likewise, the same uncertainty affects the economic aspects, Objects of this paper, since BIPV systems are often evaluated similar to conventional installations. The typical consequence is to neglect their added value such as the multi-functionality of the system and therefore showing limited advantages of BIPV. Scope of this paper, starting from a multi-criteria approach, is to outline a new methodology for evaluating the cost-effectiveness of BIPV for the building skin. This method, based on a life-cycle costing approach and on the assessment of the whole building envelope solution, is expected to support architects during the early design phase in the research of the optimal design of BIPV, synergistically taking into account both PV and building quality. A comparison with conventional building elements and different PV technologies is also presented in order to strengthen the impact of the proposed methodology.
机译:对几乎零能耗的建筑物的需求不断增长,迅速推动了建筑设计标准和建筑围护结构概念的改变。如今,光伏(PV)是在建筑环境中进行集成的最可靠技术之一,而建筑集成光伏(BIPV)则将“能源可集成性”的不同概念引入了实践。从最初的设计阶段开始,在能源(光伏和建筑需求)方面采取真正的综合方法仍然是BIPV市场崛起的最大障碍之一。同样,同样的不确定性也会影响经济方面,本文的目标是因为BIPV系统通常与常规安装类似地进行评估。典型的结果是忽略了它们的附加值,例如系统的多功能性,因此显示出BIPV的有限优势。本文的范围从多准则方法开始,概述了一种评估BIPV对建筑表皮的成本效益的新方法。该方法基于生命周期成本核算方法以及对整个建筑围护结构解决方案的评估,预计将在早期设计阶段为建筑师提供支持,以综合考虑光伏和建筑的BIPV优化设计研究,从而为建筑师提供支持质量。还介绍了与常规建筑元素和不同光伏技术的比较,以增强所提出方法的影响。

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