The Effect of Fixed External Shading Devices on Daylighting and Thermal Comfort in Residential Building

Q2 Energy
Aliakbar Heidari, M. Taghipour, Z. Yarmahmoodi
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引用次数: 11

Abstract

Building shading devices can improve the thermal comfort in indoor environment, and also reduce cooling and heating energy consumption in dry and hot climate. This study proposes the different kind of window’s fixed shading devices for energy consumption under near-extreme summer and winter conditions by conducting residential building energy simulations in Shiraz climate. Which fixed shading devices optimal configurations that give maximum energy consumption can be used in Shiraz climate. The study was based on modeling-simulation experiments where Ecotect models resented the actual building energy with and without shading devices to reducing heating and cooling load and peak consumption. The results obtained confirmed the accuracy of the model and the suitability of (horizontal, eggcrate and geometrical) of shading devices in reducing the solar gains in summer with reduced blocking of solar radiation in winter. In all cases it has been proven that excessive obstruction may yield an excessive reduction in a range of illuminances between 500 and 2000 lux, increasing lighting energy consumption. At the end results showed that horizontal, geometrical and eggcrate have the best function according to reduce energy and have enough day lighting in the zones in shiraz climate.
固定式外遮阳装置对住宅采光及热舒适性的影响
建筑遮阳装置可以提高室内环境的热舒适性,也可以减少干燥和炎热气候下的制冷和制热能耗。本研究通过在设拉子气候条件下进行住宅建筑能源模拟,提出了不同类型的窗户固定遮阳装置在近极端夏冬条件下的能源消耗。在设拉子的气候中,固定遮阳装置的最佳配置可以提供最大的能源消耗。该研究基于建模模拟实验,Ecotect模型对实际建筑能源进行了模拟,以减少加热和冷却负荷以及峰值消耗。结果证实了模型的准确性和遮阳装置(水平、鸡蛋形和几何)在减少夏季太阳增益和减少冬季太阳辐射阻挡方面的适用性。在所有情况下,已经证明,过度的障碍物可能会导致500至2000勒克斯的照度范围过度减少,增加照明能耗。结果表明,在设拉子气候条件下,水平、几何和蛋箱三种布局方式在节能和采光方面效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Daylighting
Journal of Daylighting Energy-Renewable Energy, Sustainability and the Environment
CiteScore
4.00
自引率
0.00%
发文量
18
审稿时长
10 weeks
期刊介绍: Journal of Daylighting is an international journal devoted to investigations of daylighting in buildings. It is the leading journal that publishes original research on all aspects of solar energy and lighting. Areas of special interest for this journal include, but are not limited to, the following: -Daylighting systems -Lighting simulation -Lighting designs -Luminaires -Lighting metrology and light quality -Lighting control -Building physics - lighting -Building energy modeling -Energy efficient buildings -Zero-energy buildings -Indoor environment quality -Sustainable solar energy systems -Application of solar energy sources in buildings -Photovoltaics systems -Building-integrated photovoltaics -Concentrator technology -Concentrator photovoltaic -Solar thermal
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