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Energy performance regression models for office buildings with daylighting controls

机译:具有采光控制的办公楼能源绩效回归模型

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Sensitivity analysis is performed to observe the response of the system when a given design parameter is changed. It is important to know the relationships between the input parameters and output results such that appropriate design variables can be selected to achieve the optimum building energy performance. This paper studies the sensitivity of energy performance and establishes regression models for office buildings with daylighting designs in Hong Kong. The building energy simulation computer program, namely EnergyPlus, was used to generate data for the analysis. The important input design parameters affecting the daylighting schemes were identified and analysed in terms of annual building electricity expenditures and peak electrical demands. Four building envelope design parameters, namely, window-to-wall ratio, light transmittance of windows, projection ratio of overhang, and projection ratio of side-fins were found to correlate well with the predicted incremental electricity use (IEU) and incremental peak electricity use (IPEU). Both linear and non-linear multiple regression techniques were used to develop regression models and energy equations for the predictions of IEU and IPEU. Statistical results show that such models and equations can be used to evaluate the energy performance of various building envelope design schemes for building with daylighting controls during the early design stage. [PUBLICATION ABSTRACT]
机译:当更改给定的设计参数时,执行灵敏度分析以观察系统的响应。重要的是要知道输入参数和输出结果之间的关系,以便可以选择适当的设计变量来实现最佳的建筑节能性能。本文研究了能源性能的敏感性,并建立了香港采光设计办公楼的回归模型。建筑能耗模拟计算机程序,即EnergyPlus,用于生成分析数据。根据年度建筑用电支出和峰值用电需求,确定并分析了影响采光方案的重要输入设计参数。发现四个建筑围护结构设计参数,即窗墙比,窗户的透光率,悬挑的投影比和侧鳍的投影比与预测的增量用电量(IEU)和增量峰值用电密切相关使用(IPEU)。线性和非线性多元回归技术均被用于开发用于预测IEU和IPEU的回归模型和能量方程。统计结果表明,此类模型和方程式可用于评估早期设计阶段采用采光控制的各种建筑围护结构设计方案的能源性能。 [出版物摘要]

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