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The dark side of photovoltaic-3D simulation of glare assessing risk and discomfort

机译:光伏3D模拟眩光的阴暗面评估风险和不适感

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摘要

Photovoltaic (PV) systems form an important force in the implementation of renewable energies, but as we all know, the force has always its dark side. Besides efficiency considerations and discussions about architectures of power distribution networks, the increasing numbers of installations of PV systems for implementing renewable energies have secondary effects. PV systems can generate glare due to optical reflections and hence might be a serious concern. On the one hand, glare could affect safety, e.g. regarding traffic. On the other hand, glare is a constant source of discomfort in vicinities of PV systems. Hence, assessment of glare is decisive for the success of renewable energies near municipalities and traffic zones for the success of solar power. Several courts decided on the change of PV systems and even on their de-installation because of glare effects. Thus, location-based assessments are required to limit potential reflections and to avoid risks for public infrastructure or discomfort of residents. The question arises on how to calculate reflections accurately according to the environment's topography. Our approach is founded in a 3D-based simulation methodology to calculate and visualize reflections based on the geometry of the environment of PV systems. This computational model is implemented by an interactive tool for simulation and visualization. Hence, project planners receive flexible assistance for adjusting the parameters of solar panels amid the planning process and in particular before the installation of a PV system. (C) 2014 Elsevier Inc. All rights reserved.
机译:光伏(PV)系统是实施可再生能源的重要力量,但众所周知,该力量始终有其阴暗面。除了效率方面的考虑和关于配电网络架构的讨论之外,越来越多的用于实现可再生能源的光伏系统安装数量也产生了次级影响。由于光学反射,光伏系统可能会产生眩光,因此可能引起严重关注。一方面,眩光可能会影响安全性,例如关于流量。另一方面,眩光是造成PV系统附近持续不适的原因。因此,眩光的评估对于市政当局和交通区域附近的可再生能源的成功对太阳能的成功具有决定性的作用。由于眩光的影响,有几个法院决定更换光伏系统,甚至决定拆除光伏系统。因此,需要进行基于位置的评估,以限制潜在的反射,并避免公共基础设施或居民不适的风险。问题是如何根据环境的地形准确地计算反射。我们的方法建立在基于3D的仿真方法中,可基于光伏系统环境的几何形状来计算和可视化反射。该计算模型由用于仿真和可视化的交互式工具实现。因此,在规划过程中,尤其是在安装光伏系统之前,项目规划人员会获得灵活的协助来调整太阳能电池板的参数。 (C)2014 Elsevier Inc.保留所有权利。

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