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Generating proper building envelopes for photovoltaics integration with shape grammar theory

机译:使用形状语法理论生成合适的建筑围护结构以用于光伏集成

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Building integrated Photovoltaics (BIPV) receives growing attentions from both architectural and energy saving perspectives. Large commercial building envelopes can be utilized due to their great potential of reducing building energy consumption and increasing PV integration impact, especially in climate zones with rich solar resources. Most current studies have been focused on predicting electricity generation of BIPV systems with existing envelope geometries, while few studies have discussed the generation of proper envelope shapes for PV integration due to the challenge of integrating architecture and engineering. This paper introduces a novel optimization method for BIPV shape development based on the shape grammar theory. The method reforms given building shapes/envelopes to produce a set of better BIPV shape alternatives, as well as determines the best placement and matching BIPV systems for the optimized envelopes. The main set of criteria considered during the generation and optimization process include PV power generation, PV economic impact and building energy consumption. Architectural preferences are included in generating preferred design alternatives, such as view consideration and shape direction. Commercial buildings in Egypt are used to demonstrate and validate the applications of the developed method and tool. The method and tool can help designers in achieving an optimal design of building envelope that is most suitable for maximizing PV integration. (C) 2017 Elsevier B.V. All rights reserved.
机译:从建筑和节能的角度来看,建筑集成光伏(BIPV)受到越来越多的关注。可利用大型商业建筑围护结构,因为它们具有减少建筑能耗和增加光伏集成影响的巨大潜力,尤其是在太阳能资源丰富的气候区。当前的大多数研究都集中在预测具有现有包络几何形状的BIPV系统的发电量,而由于集成架构和工程的挑战,很少有研究讨论用于PV集成的合适包络形状的产生。本文介绍了一种基于形状语法理论的BIPV形状开发的优化方法。该方法对给定的建筑物形状/包络进行了改造,以产生一组更好的BIPV形状替代方案,并确定了最佳的放置位置和与BIPV系统匹配的最佳信封。在发电和优化过程中考虑的主要标准包括光伏发电,光伏经济影响和建筑能耗。在生成首选的设计替代方案(例如视图考虑因素和形状方向)时会包括体系结构方面的偏好。埃及的商业建筑被用来演示和验证所开发方法和工具的应用。该方法和工具可以帮助设计人员实现最适合最大化光伏集成度的最佳建筑围护结构设计。 (C)2017 Elsevier B.V.保留所有权利。

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