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Cooling energy performance analysis depending on the economizer cycle control methods in an office building

机译:取决于办公大楼中节能器循环控制方法的制冷能性能分析

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The current building tends to pursue high air-tightness for the reduction of the outside air supply to prevent an increase in the energy consumption of air conditioning, resulting in high dependency on mechanical ventilation and adverse effects on indoor air quality, occupant health and productivity. In this circumstance, many developed countries improved the ventilation regulation, but mere increase in the outdoor air introduction without considering the outdoor condition elevated the cooling energy. Therefore, study of the economizer cycle system that can cause fresh outside air introduction and energy saving has been actively conducted. In this study, we analyzed different economizer control methods, addressing mixed air temperature, outdoor air fraction and cooling demand according to the outdoor air temperature. Also, we analyzed the energy consumption of the three control types of the economizer cycle through detailed EnergyPlus simulation modeling under a variety of climatic conditions. As a result, differential enthalpy control method showed the greatest energy saving by around 10% under Korean climatic conditions compared to other methods. Differential dry-bulb control method showed 12.7% lower energy consumption than no economizer method in an intermediate period, but it did show 7.1% more energy usage during the summer period under a humid region. When properly considering the latent load, it was found that the resultant energy saving potential due to economizer operation is significant. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前的建筑物倾向于追求高气密性以减少外部空气供应,以防止增加空调的能耗,从而导致对机械通风的高度依赖以及对室内空气质量,居住者健康和生产率的不利影响。在这种情况下,许多发达国家改善了通风规则,但仅仅增加室外空气引入而没有考虑室外条件会增加冷却能。因此,已经积极地进行了可能导致新鲜空气引入和节能的省煤器循环系统的研究。在这项研究中,我们分析了不同的节能器控制方法,根据室外空气温度解决了混合空气温度,室外空气分数和制冷需求。此外,我们通过详细的EnergyPlus仿真模型在各种气候条件下分析了节能器循环的三种控制类型的能耗。结果,与其他方法相比,微分焓控制方法在韩国气候条件下显示出最大的节能量,约为10%。差分干球控制方法在中间阶段的能耗比没有节煤器的能耗低12.7%,但在潮湿地区,夏季的能耗却提高了7.1%。当适当考虑潜在负荷时,发现由于省煤器的运行而产生的最终节能潜力是巨大的。 (C)2016 Elsevier B.V.保留所有权利。

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