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Sustainable energy planning. Design shading devices with integrated photovoltaic systems for residential housing units.

机译:可持续能源规划。设计带集成光伏系统的遮蔽装置,适用于住宅单元。

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The study scopes to optimize the characteristics of shading devices (SDs) with integrated photovoltaic panels (PVs) that are designed for residential building facades. The SDs are located on the external part of a window facing south, in a distance from the external wall, in order that a semi-outdoor space is created. The research deals with the integration of solar technologies in buildings. Focusing on the optimization of the relationship between the energy technologies and the architectural design. Concerning the design process we took into consideration the definition of user's visual comfort and the optimization of the design process of the final product. This experiment focuses on the integration of flexible shadings in order to use the external space as a consecution of the internal space. Methodologically the parameters of the research are defined and the decision on the type of the experiment is taken according to the summer at three different weather conditions in Crete. So, the physical model type of experiment was preferred to the computer simulation model. The results are being categorized and the process is being evaluated according to the above mentioned parameters. The research seeks to highlight how experimental shading devices with integrated PVs can achieve better view for the users while performing as energy production and reduction machines. Finally as a result the daylight analysis value is compared with the human's comfort view to outside and the energy needed for the performance of the examined unit during the day. Our main goal is to optimize the comfort in combination with the energy generated and the best suited space for the everyday activities.
机译:该研究范围优化用于集成光伏板(PVS)的阴影装置(SDS)的特性,该模板设计用于住宅建筑物外墙。 SDS位于窗口的外部部分,距离外墙的距离,以便创建半室外空间。研究涉及太阳能技术在建筑物中的整合。专注于优化能源技术与建筑设计关系的优化。关于设计过程,我们考虑了用户的视觉舒适度和最终产品设计过程的定义。该实验侧重于柔性阴影的集成,以便使用外部空间作为内部空间的封环。方法论上定义了研究的参数,并根据夏季在克里特岛的三种不同天气条件下采取关于实验类型的决定。因此,实验的实验类型是优选的计算机仿真模型。正在分类结果,并根据上述参数进行评估该过程。该研究旨在突出显示具有集成PV的实验着色设备如何为用户实现更好的视图,同时执行能源生产和减速机。最后,随着日光分析值与人类对外部的舒适视图进行比较,以及在白天进行检查的单元所需的能量。我们的主要目标是优化与日常活动所产生的能源和最适合的空间优化舒适度。

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