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Whole building validation for simulation programs including synthetic users and heating systems: experimental design

机译:仿真程序的整个建筑验证,包括合成用户和加热系统:实验设计

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A large-scale study for validating building energy simulation programs against measured data was undertaken within IEA EBC Annex 71 “Building energy performance assessment based on optimized in-situ measurements” as a more complex and realistic successor of the dataset created previously in IEA EBC Annex 58. The validation method consists of a set of high quality measurement data and a precise documentation of all boundary conditions. This enables a user to create a complete model of the different validation scenarios. The results of this model can be compared to the real measurement data. Because of the detailed modelling, the remaining deviations should indicate the limitations of the tool under investigation. The definition of the scenarios consists of extensive weather data and a detailed description of the building geometry, components compositions, thermal bridges, air tightness, ventilation, etc. In addition to the previous Annex 58 dataset this experiment contains synthetic users with internal heat and moisture gains, operated doors and windows and underfloor heating with an air source heat pump. This paper sets out the experimental design, a key element in ensuring a useful experimental dataset.
机译:在IEA EBC附件71“基于优化的原始测量基于优化的原始测量基于优化的原始测量”中,在IEA EBC附件中创建的数据集的更加复杂和现实的继任者,在IEA EBC附件71“建立能源绩效评估”中进行了大规模研究。 58.验证方法包括一组高质量的测量数据和所有边界条件的精确文档。这使用户能够创建不同验证方案的完整模型。该模型的结果可以与实际测量数据进行比较。由于详细的建模,其余偏差应指示该工具在调查中的局限性。该方案的定义包括广泛的天气数据以及建筑物几何形状,组成组合物,热桥,气密性,通风等的详细描述。除了上一个附件58数据集外,该实验含有内部热量和水分的合成用户使用空气源热泵收益,操作的门窗和地板加热。本文规定了实验设计,是确保有用的实验数据集的关键元件。

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