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Lighting and cooling energy assessment of multi-purpose control strategies for external movable shading devices by using shaded fraction

机译:使用阴影分数评估外部可移动遮阳设备的多功能控制策略的照明和冷却能量

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摘要

External movable shading devices are mainly used to improve the thermal and lighting environment of an interior space by preventing overheating during the cooling season as well as by preventing glare. An external movable shading device can be controlled using various methods, where parameters related to the lighting environment, such as daylighting and glare, are commonly adopted as major variables associated with the control of the shading device. In this paper, an algorithm is provided with which an external movable shading device can be operated in any one of three control modes as selected according to the operation purpose preferred by the occupant. The algorithm can be applied to external movable shading devices of various shapes. The shaded fraction is adopted as a major control element, and the control purpose of the external shading device is configured to include energy conservation, illuminance satisfaction, and glare protection. The algorithm includes an hourly evaluation procedure for obtaining the range of allowable shading device movement that satisfies each of the three operation purposes. Real-scale mockup tests for the three control modes were conducted during different time periods in summer to verify the performance of the control strategies. The test results regarding the energy and environment performance for each control mode show that the control algorithm can be selected to provide satisfactory compromises between energy and visual comfort factors. The result of this study can provide users with options for controlling movable shading devices on a building according to their preferred operation purposes. (C) 2017 Elsevier B.V. All rights reserved.
机译:外部可移动遮阳装置主要用于通过防止冷却季节期间的过热以及防止眩光来改善内部空间的热和照明环境。可以使用各种方法来控制外部可移动遮阳设备,其中通常采用与照明环境有关的参数,例如采光和眩光,作为与控制遮阳设备相关的主要变量。在本文中,提供了一种算法,利用该算法,外部可移动遮阳设备可以根据乘员首选的操作目的在所选择的三种控制模式中的任何一种下进行操作。该算法可以应用于各种形状的外部可移动遮光设备。阴影部分被用作主要控制元素,并且外部阴影设备的控制目的被配置为包括节能,照度满足和眩光保护。该算法包括每小时评估程序,用于获得满足三个操作目的中的每一个的可允许遮光设备移动的范围。在夏季的不同时间段内,对三种控制模式进行了实际规模的模型测试,以验证控制策略的性能。关于每种控制模式的能量和环境性能的测试结果表明,可以选择控制算法以在能量和视觉舒适度之间提供令人满意的折衷。这项研究的结果可以为用户提供根据他们的首选操作目的来控制建筑物上的可移动遮阳设备的选项。 (C)2017 Elsevier B.V.保留所有权利。

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