面向能源规划的围护结构负荷简化预测模型
发布时间:2018-12-10 07:18
【摘要】:提出了一种单体建筑围护结构动态空调负荷预测的简化模型,在保证满足区域预测结果精度的同时,将模型输入参数简化至6个;同时采用劳伦斯伯克利国家实验室开发的Buildings Modelica Library开源模型库来建立模型,并验证了该模型的精度;在此基础上运用线性集合法对简化模型进行降阶处理,有效提高了负荷预测的计算速度.该模型的提出,使得区域每栋建筑简化快速模拟均成为可能,为进一步推广到区域空调负荷预测提供了方法基础.
[Abstract]:In this paper, a simplified model of dynamic air conditioning load forecasting for single building envelope structure is proposed. The model input parameters are simplified to 6 while ensuring the accuracy of regional prediction results. At the same time, the Buildings Modelica Library open source model library developed by Lawrence Berkeley National Laboratory is used to build the model, and the accuracy of the model is verified. On this basis, the linear set method is used to reduce the order of the simplified model, and the calculation speed of load forecasting is improved effectively. The proposed model makes it possible for each building in the region to be simplified and quickly simulated, which provides a method basis for further spreading to regional air conditioning load forecasting.
【作者单位】: 浙江大学建筑工程学院;同济大学土木工程学院;法国里昂国立应用科学学院里昂热能研究实验室;
【基金】:国家自然科学基金(51508500)
【分类号】:TU831
[Abstract]:In this paper, a simplified model of dynamic air conditioning load forecasting for single building envelope structure is proposed. The model input parameters are simplified to 6 while ensuring the accuracy of regional prediction results. At the same time, the Buildings Modelica Library open source model library developed by Lawrence Berkeley National Laboratory is used to build the model, and the accuracy of the model is verified. On this basis, the linear set method is used to reduce the order of the simplified model, and the calculation speed of load forecasting is improved effectively. The proposed model makes it possible for each building in the region to be simplified and quickly simulated, which provides a method basis for further spreading to regional air conditioning load forecasting.
【作者单位】: 浙江大学建筑工程学院;同济大学土木工程学院;法国里昂国立应用科学学院里昂热能研究实验室;
【基金】:国家自然科学基金(51508500)
【分类号】:TU831
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