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Optimal control parameter for electrochromic glazing operation in commercial buildings under different climatic conditions

机译:商业建筑在不同气候条件下电致变色玻璃的最佳控制参数

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Electrochromic glazing can dynamically control solar heat gains of windows depending on the indoor and outdoor environments. This means that the energy performance of buildings with the electrochromic glazing window systems are affected by control parameters and climatic conditions. This study proposes an optimized electrochromic glazing control parameter and value to improve the energy performance and sustainability of medium-sized commercial building in different climates. It characterized the annual heating and cooling energy consumption of a typical building model with the window systems for different potential control parameters, such as outdoor air temperature, room air temperature, solar radiation incident on the window, and global horizontal solar irradiance. A pattern search algorithm was applied to derive the optimal control value of each parameter for four window orientations in six different climatic conditions. Our results show that for the electrochromic glazing window operation, outdoor air temperature is the most effective control parameter for reducing both cooling and heating energies in all window orientations and climatic conditions. When the electrochromic glazing window on three sides of building is controlled at the optimal outdoor air temperature, the cooling coil size of the air handling unit decreased by 16.5% on average under different climatic conditions. Furthermore, the daily peak cooling loads reduced by an average of 11.8%. The annual heating and cooling energy consumption decreased by 46.1 kWh (17.4%) on average per unit window area compared with the typical static window case under six different locations.
机译:电致变色玻璃可以根据室内和室外环境动态控制窗户的太阳能吸收热量。这意味着带有电致变色玻璃窗系统的建筑物的能源性能受控制参数和气候条件的影响。这项研究提出了一种优化的电致变色玻璃控制参数和值,以改善中型商业建筑在不同气候下的能源性能和可持续性。它描述了具有不同潜在控制参数的窗户系统的典型建筑模型的年供暖和制冷能耗,这些参数包括室外空气温度,室内空气温度,入射在窗户上的太阳辐射以及全球水平太阳辐照度。应用模式搜索算法,得出在六个不同气候条件下四个窗口方向的每个参数的最佳控制值。我们的结果表明,对于电致变色玻璃窗操作,室外空气温度是在所有窗户方向和气候条件下减少制冷和加热能量的最有效控制参数。当将建筑物三侧的电致变色玻璃窗控制在最佳室外空气温度时,在不同气候条件下,空气处理单元的冷却盘管尺寸平均减少16.5%。此外,每天的峰值冷却负荷平均减少了11.8%。与在六个位置不同的典型静态窗户情况相比,平均每单位窗户面积的年供暖和制冷能耗平均减少了46.1 kWh(17.4%)。

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