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Heating, Cooling, and Lighting Energy Demand Simulation Analysis of Kinetic Shading Devices with Automatic Dimming Control for Asian Countries

机译:亚洲国家自动调光控制动力学,冷却和照明能源需求仿真分析

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摘要

Kinetic shading devices have recently been introduced for energy-saving and for their innovative appearance. Quantifiable research on kinetic operation systems is necessary to evaluate their applicability in a specific region. This study developed a theoretical methodology for producing an optimal positioning algorithm targeting minimizing total energy demands of kinetic shading devices; the control algorithms for hourly operation were tested through a combined analysis framework of energy performance simulations and spreadsheet analysis. Two common types of external shading devices, vertical-folding and horizontal-rotating types, were simulated in three Asian cities with different climate conditions. Automatic kinetic operation with a consequential dimming control was simulated on the east, south and west facade of an office building, selecting the optimal position every hour based on total energy demand for heating, cooling, and lighting. Comparative simulation analyses for kinetic operation and fixed shading demonstrated that the energy saving potential of fixed shading was greater than that of kinetic operation shading. Kinetic operation was the most applicable in Seoul, where seasonal optimal operation was required for both types of kinetic shadings. In Abu Dhabi and Hanoi, cooling and lighting energy demands were balanced every hour through kinetic operation. Rotating-type kinetic operation in these two regions resulted in better energy-saving performance. The operation frequency pattern of rotating-type kinetic shading provided more active operation and consequent outperformance over the folding-type.
机译:最近引入了动力学遮光装置,以节省节能和其创新外观。可以评估其在特定区域中的适用性所必需的动力操作系统的可量化研究。本研究开发了一种理论方法,用于产生最佳定位算法,其瞄准最小化动力学遮光装置的总能量需求;通过组合分析框架和电子表格分析来测试每小时操作的控制算法。两种常见类型的外部遮阳装置,垂直折叠和水平旋转类型,在三个亚洲城市中模拟了不同的气候条件。在办公大楼的东部,南部和西部外立面上模拟了具有相应调光控制的自动动力学操作,基于对加热,冷却和照明的总能源需求每小时选择最佳位置。用于动力学操作和固定阴影的比较仿真分析表明,固定阴影的节能电位大于动力学操作遮阳的节能电位。动力学操作是首尔最适用的,两种类型的动力学阴影都需要季节性最佳操作。在阿布扎比和河内,通过动力运行,冷却和照明能源需求每小时平衡。这两个区域中的旋转式动力学操作导致节能性能更好。旋转型动力学遮蔽的操作频率模式提供了更有源的操作和随之而来的折叠式优势。

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  • 作者

    Byungyun Lee;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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