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Accuracy of Energy Analysis of Buildings: A Comparison of a Monthly Energy Balance Method and Simulation Methods in Calculating the Energy Consumption and the Effect of Thermal Mass

机译:建筑物能量分析的准确性:计算能量消耗和热质量影响的月度能量平衡方法与模拟方法的比较

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The purpose of this article is to analyze the effects of thermal mass on heating and cooling energy in Nordic climate and for modern, well-insulated Nordic buildings. The effect of thermal mass is analyzed by calculations made by seven researchers and by seven different calculation programs. Six of these programs are simulation programs (Consolis Energy, IDA-ICE, SciaQPro, TASE, VIP, VTT House model) and one monthly energy balance method (maxit energy) based on the standard EN 832, which is the predecessor of ISO DIS 13790. It is purpose to evaluate the reliability of the monthly energy calculation method and especially its gain utilization factor compared with the simulation programs. In addition some sensitivity analysis concerning e.g., the effects of the size and the orientation of windows and the weather data on the energy consumption are made.The results show that the simplified standard methods of EN 832 and of ISO DIS 13790 generally give accurate results in calculating the annual heating energy, e.g., in the context of energy design and energy certification. However, the gain utilization factor of these standards is too low for very light buildings having no massive surfaces resulting in a too high energy consumption. The study shows, that the differences in input data cause often greater differences in calculation results than the differences between various calculation and simulation methods.
机译:本文的目的是分析北欧气候以及隔热良好的北欧建筑中热质对供暖和制冷能源的影响。通过七个研究人员的计算以及七个不同的计算程序来分析热质量的影响。其中六个程序是模拟程序(Consolis Energy,IDA-ICE,SciaQPro,TASE,VIP,VTT House模型)和一个基于标准EN 832(ISO DIS 13790的前身)的每月能量平衡方法(最大能量)。旨在与模拟程序相比,评估月度能量计算方法的可靠性,尤其是其增益利用率。此外,还进行了一些敏感性分析,例如,窗户的尺寸和方向以及天气数据对能耗的影响。结果表明,简化的EN 832和ISO DIS 13790标准方法在以下方面给出了准确的结果:例如,在能源设计和能源认证的背景下,计算年度供暖能源。然而,这些标准的增益利用因数对于没有大面积表面的非常轻的建筑物而言太低,导致能量消耗太高。研究表明,输入数据的差异通常会导致计算结果的差异大于各种计算和仿真方法之间的差异。

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