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An illuminance ratio prediction method for daylighting control of buildings.

机译:用于建筑物采光控制的照度比预测方法。

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摘要

Heating, cooling and lighting are the dominant sectors of energy consumption in commercial buildings. Controlling solar radiation through windows will improve the illuminance distribution as well as energy efficiency of buildings. Advanced window systems with motorized shading controlled in conjunction with light dimming constitute a promising approach for improving energy efficiency of buildings. However, the performance of current controlled daylighting systems is neither sufficiently reliable nor accurate, thereby reducing their widespread adoption.; The uncertainty of light dimming control system performance is largely due to prediction of workplane illuminance. This makes the system unreliable and sometimes more complex. To improve the performance of light dimming control systems, the prediction of the workplane illuminance must be considered first. Without thorough understanding of systems, their control may not be achieved efficiently.; A new daylight prediction method, Illuminance Ratio Prediction (IRP) method, is proposed in this thesis for an integrated daylighting control system. The proposed method, which is theoretically developed based on radiosity theory, shows that the illuminance ratio of two arbitrary surfaces in a space in the presence of one initial light source with varying quantity at a fixed location is always constant. The proposed method was experimentally proved. With the IRP method, reliable and accurate predictions of daylighting parameters such as the workplane illuminance, the exterior vertical illuminance and the solar heat gains through the window systems, were obtained as the basis for development of an integrated daylighting control methodology.; The methodology was validated in an outdoor test-room with dimmable electric lighting and a window with built-in motorized blinds. The algorithm was calibrated with a workplane sensor control. Then, an integrated daylighting control system using an interior front wall sensor for prediction was successfully tested. It was found that this system could maintain both the workplane illuminance level and the solar heat gains at the desirable level by simultaneous controls of light dimming and blind tilt angle. With active daylighting control, significant energy savings may be achieved in energy consumption for lighting and cooling. One important asset of the methodology developed is that motorized blinds are optimally tilted so as to admit just enough daylight to satisfy workplane illuminance requirements predicted with IRP method, thus reducing cooling loads due to potential excessive solar gains.
机译:采暖,制冷和照明是商业建筑能耗的主要部门。通过窗户控制太阳辐射将改善建筑物的照度分布以及能源效率。先进的窗户系统具有电动遮阳功能,并结合了调光功能,是提高建筑物能效的一种有前途的方法。然而,当前受控采光系统的性能既不足够可靠也不准确,从而减少了其广泛采用。调光控制系统性能的不确定性很大程度上归因于工作平面照度的预测。这使系统不可靠,有时更加复杂。为了提高调光控制系统的性能,必须首先考虑工作平面照度的预测。没有对系统的透彻了解,可能无法有效地实现对它们的控制。本文提出了一种新的日光预测方法,即照度比预测(IRP)方法。该方法是基于光能传递理论在理论上发展起来的,它表明在固定位置上存在一个具有变化量的初始光源的情况下,空间中两个任意表面的照度比始终是恒定的。实验证明了该方法的有效性。使用IRP方法,可以可靠,准确地预测采光参数,例如工作面照度,外部垂直照度和通过窗户系统获得的太阳热量,以此作为开发综合采光控制方法的基础。该方法已在带有可调光电照明的户外测试室和带有内置电动百叶窗的窗户中进行了验证。该算法已通过工作平面传感器控件进行了校准。然后,成功测试了使用内部前壁传感器进行预测的集成采光控制系统。已经发现,该系统可以通过同时控制调光和盲倾角,将工作面照度水平和太阳热量获得保持在理想水平。通过主动采光控制,可以大大节省照明和冷却能耗。所开发方法的一项重要资产是,电动百叶窗应最佳倾斜,以允许仅允许足够的日光满足IRP方法预测的工作平面照度要求,从而减少由于潜在的过度太阳获取而产生的冷却负荷。

著录项

  • 作者

    Park, Kwang-Wook.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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