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Multi-criteria energy and daylighting optimization for an office with fixed and moveable shading devices

机译:具有固定和可移动遮阳设备的办公室的多标准能源和采光优化

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摘要

This paper presents an optimization approach to design an external fixed shading device protecting an energy efficient office from high sun loads. The developed methodology takes into account heating, cooling and energy required for lighting appliances, along with the interaction with an internal moveable venetian blind for direct sunlight protection. The optimization process considers whole-year simulations performed with different software codes, specifically ESP-r for energy calculation and DAYSIM® for daylighting analysis, while the modeFRONTIER® tool synchronizes the simulations and drives the optimization for searching optimal solutions. The fixed shading device is a flat panel positioned parallel to the window and inclined by its horizontal axis and the optimization variables change the size, inclination and position of the device with respect to the building façade. Two exposures are considered, south and south-west, and the optimized results are reported as a Pareto front highlighting the performance of different solutions, comparing the energy and daylighting performance of the office
机译:本文提出了一种优化方法来设计外部固定遮阳设备,以保护高能效办公室免受高日照负荷的影响。所开发的方法考虑了照明设备所需的加热,冷却和能量,以及与内部可移动百叶窗的相互作用,以提供直接的阳光保护。优化过程考虑使用不同软件代码进行的全年仿真,特别是用于能量计算的ESP-r和用于日光分析的DAYSIM®,而modeFRONTIER®工具同步仿真并驱动优化以寻找最佳解决方案。固定遮阳设备是平行于窗户放置并通过其水平轴倾斜的平板,并且优化变量会更改设备相对于建筑立面的尺寸,倾斜度和位置。考虑了两次曝光(西南和西南),并以帕累托前沿的形式报告了优化结果,突出了不同解决方案的性能,比较了办公室的能源和采光性能

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