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首页> 外文期刊>Journal of building performance simulation >Analysis of a simplified calibration procedure for 18 design-phase building energy models
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Analysis of a simplified calibration procedure for 18 design-phase building energy models

机译:分析18个设计阶段建筑能耗模型的简化校准程序

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This paper evaluates the accuracy of 18 design-phase building energy models, built according to LEED Canada protocol, and investigates the effectiveness of model calibration steps to improve simulation predictions with respect to measured energy data. These calibration steps, applied in professional practice, included inputting actual weather data, adding unregulated loads, revising plug loads (often with submetered data), and other simple updates. In sum, the design-phase energy models underpredicted the total measured energy consumption by 36%. Following the calibration steps, this error was reduced to a net 7% underprediction. For the monthly energy use intensity (EUI), the coefficient of variation of the root mean square error improved from 45% to 24%. Revising plug loads made the largest impact in these cases. This step increased the EUI by 15% median (32% mean) in the models. This impact far exceeded that of calibrating the weather data, even in a sensitivity test using extreme weather years.
机译:本文评估了根据LEED Canada协议建立的18个设计阶段建筑能耗模型的准确性,并研究了模型校准步骤对于改善实测能耗数据的仿真预测的有效性。在专业实践中应用的这些校准步骤包括输入实际天气数据,添加未调节负载,修改插头负载(通常带有亚计量数据)以及其他简单更新。总而言之,设计阶段的能源模型将测得的总能耗低估了36%。遵循校准步骤后,该误差降低到净低估了7%。对于每月的能源使用强度(EUI),均方根误差的变异系数从45%提高到24%。在这些情况下,不断变化的插头载荷影响最大。此步骤在模型中将EUI中位数提高了15%(平均值为32%)。即使在使用极端天气年份的灵敏度测试中,这种影响也远远超过了校准天气数据的影响。

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