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Criteria and policies to master the visual impact of solar systems in urban environments: The LESO-QSV method

机译:掌握城市环境中太阳能系统视觉影响的标准和政策:LESO-QSV方法

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Increased use of solar collectors in buildings is necessary but poses major challenges in existing built environ ments, especially where architectural quality is an issue. The large size of solar systems at the building scale requires careful planning, as they may easily end up compromising the aesthetics of buildings, threatening the identity of entire contexts. A new method named LESO-QSV(for Laboratoire d'Energie SOlaire - Qualite Sensibilite-Visibilite) has been developed to help authorities promote solar energy use while preserving the quality of pre-existing urban areas. The vision underlining the approach is that solar integration is possible also in delicate contexts, if appropriate design efforts and adequate cost investments are made. The issue is then no longer to be in favour or against the use of solar systems in cities, but rather to define appropriate local levels of integration quality, and to identify the factors needed to initiate smart solar energy policies able to preserve the quality of pre-existing urban contexts while promoting solar energy use.The LESO-QSV method helps tackle these issues with clear and objective proposals:First it clarifies the notion of architectural integration quality and proposes a simple evaluation method, based on a set of criteria derived from pre-existing literature.Then it helps authorities set and implement local acceptability requirements, introducing the notion of architectural "criticity" of city surfaces (LESO-QSV acceptability). The concept of "criticity", at the basis of the whole approach, is defined by the Sensitivity of the urban context where the solar system is planned, combined with its Visibility (close and remote) from the public domain. The more sensitive the urban area and the more visible the system (high "criticity"), the higher the need for integration quality. In practice, authorities will be in charge to set the desired integration quality levels for each of the defined "criticity" situations, considering local specificities (energy context, available energy sources, political and social considerations, city identity and topography, among others). To help authorities set these quality expectations, the software LESO-QSV Grid has been developed. It illustrates the acceptance impact of pre-defined sets of quality requirements, using a large number of integration examples (150 emblematic cases). These detailed examples are provided to show authorities how to objectively evaluate integration quality, but they also constitute a large set of learning examples, good and bad, for architects, installers and building owners.Finally the method proposes a way to tailor solar energy policies to local urban specificities by mapping the architectural "criticity" of city buildings surfaces, and crossing this information with a city solar irradiation map (LESO-QSV crossmapping), hence completing the characterization of the building surfaces with the potentially required effort of integration.
机译:在建筑物中增加太阳能收集器的使用是必要的,但是在现有的建筑环境中构成了重大挑战,尤其是在建筑质量成为问题的情况下。建筑规模的大型太阳能系统需要仔细计划,因为它们很容易最终损害建筑物的美感,从而威胁到整个环境的特性。已经开发出一种名为LESO-QSV的新方法(用于能源实验室实验室-Qualite Sensibilite-Visibilite),以帮助当局促进太阳能的使用,同时保持原有城市区域的质量。强调该方法的愿景是,如果做出适当的设计努力和足够的成本投资,那么在微妙的情况下也可以进行太阳能集成。因此,该问题不再是赞成或反对在城市中使用太阳能系统,而是要确定合适的本地集成质量水平,并确定启动能够保持太阳能质量的智能太阳能政策所需的因素。 LESO-QSV方法通过明确,客观的建议帮助解决这些问题:首先,它阐明了建筑集成质量的概念,并基于一系列基于前者的标准提出了一种简单的评估方法。现有文献。然后,它可以帮助当局制定和实施当地的可接受性要求,引入城市表面的建筑“批判性”概念(LESO-QSV可接受性)。在整个方法的基础上,“批判性”的概念由规划太阳系的城市环境的敏感度及其在公共领域的可见性(近距离和远距离)定义。城市区域越敏感,系统越可见(“高”),对集成质量的需求就越高。在实践中,主管部门将负责为每种已定义的“临界”情况设置所需的集成质量级别,并考虑当地的特殊性(能源背景,可用能源,政治和社会考虑因素,城市特征和地形等) )。为帮助当局设定这些质量期望,已开发了LESO-QSV Grid软件。它使用大量的集成示例(150个标志性案例)说明了预定义的质量要求集对接受的影响。提供这些详细的示例以说明主管部门如何客观地评估集成质量,但它们也构成了许多学习示例,无论是对于建筑师,安装人员还是建筑物所有者,无论是好是坏。该方法最后提出了一种针对太阳能政策进行调整的方法通过绘制城市建筑物表面的建筑“临界度”,并将此信息与城市太阳辐射图(LESO-QSV交叉映射)相交叉,从而通过潜在的整合工作完成对建筑物表面的表征,从而获得当地城市的特殊性。

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