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Dynamic simulation and analysis of daylighting factors for gymnasiums in mid-latitude China

机译:中纬度地区体育馆采光因子的动态模拟与分析

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摘要

Energy-conscious design of gymnasium daylighting can contribute to significant energy savings and improve users' playing environment. The purpose of this research is to assess the relative impact of 22 different design factors on interior daylighting effects, and to formulate design recommendations for gymnasiums in mid-latitude area of China. Each factor with very high impact: dates, latitude, window position, glazing transmittance, building height, building depth and window area were simulated under the constraints of gymnasium illumination and illumination uniformity. The window area, which has the direct relationship with daylighting, is considered as the evaluation standard for the daylighting performance of other influence factors. A complex interdependence among these daylighting factors was found. By considering daylighting and energy-saving in combination, 'Autumnal Equinox' at 16:00 was identified as an appropriate daylighting design date and time. Side windows are not suitable for gymnasium daylighting except in designs where there is no seating. For small gymnasiums with no seats, the lighting performance of side-windows is most influenced by glazing transmittance, building height and depth. For all sizes of gymnasium skylights, the influential factors are glazing transmittance and building height. A simplified formula was obtained via linear regression, which enables architects to quickly calculate the required window area during the preliminary design phase.
机译:体育馆采光的节能设计可大大节省能源并改善用户的游戏环境。这项研究的目的是评估22种不同设计因素对室内采光的相对影响,并为中国中纬度地区的体育馆制定设计建议。在体育馆照明和照明均匀性的约束下,模拟了影响非常大的每个因素:日期,纬度,窗户位置,玻璃透光率,建筑物高度,建筑物深度和窗户面积。与采光直接相关的窗口区域被认为是其他影响因素的采光性能的评估标准。这些采光因素之间存在复杂的相互依赖性。通过综合考虑采光和节能,确定在16:00的“秋季春分”是合适的采光设计日期和时间。侧窗不适合在体育馆采光,除非没有座位的设计。对于没有座位的小型体育馆,侧窗的照明性能受玻璃透光率,建筑物高度和深度的影响最大。对于各种尺寸的体育馆天窗,影响因素是玻璃透光率和建筑物高度。通过线性回归获得了简化的公式,这使建筑师能够在初步设计阶段快速计算所需的窗口面积。

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