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Savings in Cooling Energy with a Thermal Management System for LED Lighting in Office Buildings

机译:通过办公楼LED照明热管理系统节省冷却能源

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Light-emitting diode (LED) lighting should be considered for lighting efficiency enhancement, however, waste heat from light-emitting diode (LED) lighting increases the internal cooling load during the summer season. In order to solve this problem we propose a thermal management system for light-emitting diode (LED) lighting with a heat exchanger module integrated with the building’s heating, ventilation, and air conditioning (HVAC) system to move the lighting’s waste heat outdoors. An experiment was carried out to investigate the thermal effects in a test chamber and the heat exchange rate between the heat sink and the duct air. The heat generated by the light-emitting diode (LED) lighting was calculated as 78.1% of light-emitting diode (LED) input power and the heat exchange rate of the lighting heat exchange module was estimated to be between 86.5% and 98.1% according to the light-emitting diode (LED) input power and the flow rate of air passing the heat sink. As a result, the average light-emitting diode (LED) lighting heat contribution rate for internal heat gain was determined as 0.05; this value was used to calculate the heating and cooling energy demand of the office building through an energy simulation program. In the simulation results, the cooling energy demand was reduced by 19.2% compared with the case of conventionally installed light-emitting diode (LED) lighting.
机译:应该考虑使用发光二极管(LED)照明来提高照明效率,但是,在夏季,来自发光二极管(LED)照明的废热会增加内部冷却负荷。为了解决此问题,我们提出了一种用于发光二极管(LED)照明的热管理系统,该系统具有与建筑物的供暖,通风和空调(HVAC)系统集成的热交换器模块,以将照明的废热转移到室外。进行了一项实验,以研究测试室中的热效应以及散热器和管道空气之间的热交换率。发光二极管(LED)照明产生的热量计算为发光二极管(LED)输入功率的78.1%,并且照明热交换模块的热交换率估计为在86.5%和98.1%之间到发光二极管(LED)的输入功率和通过散热器的空气流量。结果,将内部热增益的平均发光二极管(LED)照明热贡献率确定为0.05。该值用于通过能源模拟程序计算办公大楼的供暖和制冷能源需求。在仿真结果中,与常规安装的发光二极管(LED)照明相比,冷却能量需求减少了19.2%。

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