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Application of RELUX simulation to investigate energy saving potential from daylighting in a new educational building in UK

机译:RELUX模拟在英国一座新教育大楼的日光照明节能潜力研究中的应用

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摘要

Daylighting is a renewable energy solution for illumination and visual comfort in buildings. Daylighting performance and its induced energy saving largely depends on various factors, including room geometry, window-to-wall ratio, window transmittance, surface reflectance of construction and surrounding obstructers, artificial lighting array, its daylight-related control strategies and so forth. During the last few decades, lighting simulation tools developed quickly to provide researchers and architects a faster and reliable ways to simulate complex lighting environment. The aim of this paper is to deal with a quantitative analysis of annual energy saving potential from daylighting in a real building using various methods. A case study of a newly constructed educational atrium building, Engineering and Science Learning Centre (ESLC) in the University of Nottingham, UK, is presented. Computational analysis using validated lighting simulation tool RELUX will be conducted to simulate the daylighting performance in the selected rooms. Particularly, an economical measurement of window transmittance and interior surface reflectance will be conducted, and the measured results will be input into the simulation software to increase the accuracy of simulation results. The annual energy saving potential in artificial lighting from daylighting is determined by European Standard EN15193 and also estimated using static climate-based Daylight Factor (DF) method and dynamic climate-based Daylight Coefficient (DC) methods.
机译:采光是建筑物的照明和视觉舒适的可再生能源解决方案。采光性能及其诱导的节能在很大程度上取决于各种因素,包括房间的几何形状,窗户与墙壁的比率,窗户的透射率,建筑物和周围障碍物的表面反射率,人造照明阵列,与日光有关的控制策略等。在过去的几十年中,照明仿真工具发展迅速,为研究人员和建筑师提供了一种更快,更可靠的方法来模拟复杂的照明环境。本文的目的是使用各种方法,对真实建筑物中采光所产生的年度节能潜力进行定量分析。介绍了英国诺丁汉大学新建的教育中庭大楼,工程和科学学习中心(ESLC)的案例研究。将使用经过验证的照明模拟工具RELUX进行计算分析,以模拟选定房间的日光表现。特别地,将进行窗透射率和内表面反射率的经济测量,并将测量结果输入到仿真软件中以提高仿真结果的准确性。根据欧洲标准EN15193确定日光人工照明的年度节能潜力,并使用基于静态气候的日光系数(DF)方法和基于动态气候的日光系数(DC)方法进行估算。

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    Yu Xu; Su Yuehong; Chen Xin;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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