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Simulation-based retrofitting of an educational building in terms of optimum shading device and energy efficient artificial lighting criteria

机译:根据最佳遮阳设备和节能人工照明标准对教育建筑进行基于仿真的改造

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摘要

The high level of daylight performance is crucial to increase academic and work performance of students and staff in educational buildings which are mostly used during the daytime. New design solutions have potential to reach optimum lighting conditions and minimum energy consumption. So, the purpose of this study is to evaluate and propose an energy efficient lighting design for an educational building. The aim is to find the optimum type of shading device with appropriate slat angles, transmittance of glazing, and the luminaire type/layout as well. Utilizing DIALux simulations, scenarios for combinations of these inputs are tested for classrooms, offices and a laboratory, which are non-identical due to their orientation, size, window characterization and facade organization. The procedure covers all significant days (winter/ summer solstice and equinoxes) during one year. Such an integrated approach would be proposed for lighting design and retrofit applications. © 2016, LLC Editorial of Journal “Light Technik”. All rights reserved.
机译:高水平的日光性能对于提高教学大楼中学生和教职工的学习和工作绩效至关重要,而教学大楼通常是白天使用的。新的设计解决方案有可能达到最佳照明条件和最低能耗。因此,本研究的目的是评估和提出用于教育建筑的节能照明设计。目的是找到具有合适的板条角度,玻璃的透射率以及照明设备类型/布局的最佳遮光设备类型。利用DIALux仿真,针对教室,办公室和实验室测试了这些输入组合的场景,由于它们的方向,大小,窗口特征和立面组织,它们是不相同的。该程序涵盖一年中所有重要的日子(冬至/夏至和春分)。对于照明设计和改造应用,将提出这样一种集成方法。 ©2016,LLC杂志“ Light Technik”的社论。版权所有。

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