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Rapid response surface creation method to optimize window geometry using dynamic daylighting simulation and energy simulation

机译:使用动态采光模拟和能量模拟的快速响应曲面创建方法来优化窗口几何形状

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Window geometries have significant impacts on building performance. Thus, simulation-based decision support during the early stages of building design is in high demand. Building designs are multi-objective optimization processes in which unquantified values, such as the design preferences of architects or clients, are included as objective functions along with building performance. In this context, showing architects the response surface between window geometries and building performance is useful for their decision making. This study proposes a procedure for creating a response surface in a feasible manner. In the procedure, the number of dynamic daylighting simulations is reduced by creating a link between the daylight factor (DF) and daylight autonomy (DA). In addition, the procedure allows for the estimation of electric lighting energy savings with high resolution by integrating dynamic daylighting simulation tools into energy simulation tools. In the case studies, DAYSIM and EnergyPlus are used to create the response surfaces. The impact of COPs for the cooling and heating systems on the features of the response surface can be easily analyzed. Higher COP results in a narrower selectable design range in cases where the same percentage of acceptable ranges for building performance degradation is employed (from 30-100% to 60-100%). The method was validated with detailed simulation outputs. The error caused by the proposed procedure (below 1%) was negligible compared with the error caused by the selection of the daylight simulation algorithm (approximately 5%). (C) 2015 Elsevier B.V. All rights reserved.
机译:窗户的几何形状对建筑性能有重大影响。因此,对建筑设计早期阶段基于仿真的决策支持的需求很高。建筑设计是多目标优化过程,其中将未量化的值(例如建筑师或客户的设计偏好)与建筑性能一起作为目标函数。在这种情况下,向建筑师展示窗口几何形状和建筑性能之间的响应面对于他们的决策很有用。这项研究提出了一种以可行的方式创建响应面的程序。在此过程中,通过在日光因子(DF)和日光自主(DA)之间建立链接,减少了动态日光模拟的次数。此外,该程序通过将动态日光模拟工具集成到能源模拟工具中,可以以高分辨率估算电气照明的节能量。在案例研究中,DAYSIM和EnergyPlus用于创建响应面。可以轻松分析用于冷却和加热系统的COP对响应表面特征的影响。在采用相同百分比的建筑性能下降可接受范围的情况下(从30-100%到60-100%),较高的COP导致选择的设计范围变窄。通过详细的仿真输出验证了该方法。与选择日光模拟算法引起的误差(大约5%)相比,由建议的过程引起的误差(低于1%)可以忽略不计。 (C)2015 Elsevier B.V.保留所有权利。

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