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Thermal performance evaluation of a massive brick wall under real weather conditions via the Conduction Transfer function method

机译:传导传递函数法评估真实天气条件下大体积砖墙的热性能

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The reliable estimation of buildings energy needs for cooling and heating is essential for any eventual thermal improvement of the envelope or the HVAC equipment. This paper presents an interesting method to evaluate the thermal performance of a massive wall by using the frequency-domain regression (FDR) method to calculate CTF coefficients by means of the Fourier transform. The method is based on the EN ISO 13786 (2007) procedure by using the Taylor expansion for the elements of the heat matrix. Numerical results were validated through an experimental heating box with stochastic boundary conditions on one side of the wall representing real weather conditions and constant temperature profile on the other side representing the inside ambiance in real cases. Finally, a frequency analysis was performed in order to assess the validity and accuracy of the method used. The results show that development to the second order is sufficient to predict the thermal behavior of the studied massive wall in the range of frequencies encountered in the building applications (one hour time step). This method is useful for thermal transfer analysis in real weather conditions where the outside temperature is stochastic; it also allows the evaluation of the thermal performance of a wall through a frequency analysis.
机译:可靠估算建筑物的制冷和供暖能源需求,对于任何最终对围护结构或HVAC设备进行的热力改进都是至关重要的。本文提出了一种有趣的方法来评估大墙的热性能,方法是使用频域回归(FDR)方法通过傅里叶变换来计算CTF系数。该方法基于EN ISO 13786(2007)程序,对热矩阵的元素使用泰勒展开。通过实验加热箱验证了数值结果,该加热箱的壁的一侧是随机边界条件,代表真实的天气条件,另一侧则是恒定温度曲线,代表实际环境的内部环境。最后,进行了频率分析,以评估所用方法的有效性和准确性。结果表明,在建筑应用中遇到的频率范围内(一小时时间步长),发展到第二阶足以预测所研究的大体积墙的热行为。该方法对于外部温度随机的真实天气条件下的传热分析很有用。它还可以通过频率分析来评估墙的热性能。

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