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An improved algorithm for thermal dynamic simulation of walls using Z-transform coefficients

机译:基于Z变换系数的墙体热力学模拟的改进算法

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The Transfer Function Method (TFM), recommended by American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE), is one of the most modem tools available to solve heat transfer problems in building envelopes and environments. TFM utilises Z-transform to solve the equations system that describes the heat transfer in a multi-layered wall. Due to an analogy with an electric circuit, it is possible to write the equations system in a matrix suitable to be solved by computer. Authors carried out an analysis on an historical building placed in the south of Italy to test the reliability and the quality of the thermal dynamic simulation using TFM. The analysis is performed using some control systems tools like Bode plots, step response, root and poles location. Results show clearly that, for very massive building, a simply application of TFM fails but if the poles and the residuals are re-ordered in a different position, it will be possible to solve the numerical problem. Furthermore, the analysis shows that the choice of the sampling period is a significant factor to obtain a reliable simulation.
机译:由美国供热,制冷和空调工程师协会(ASHRAE)推荐的传递函数法(TFM)是可用于解决建筑物围护结构和环境中传热问题的最现代的工具之一。 TFM利用Z变换来求解描述多层壁中传热的方程组。由于与电路的类比,可以将方程式系统写成适合计算机求解的矩阵。作者对位于意大利南部的一栋历史建筑进行了分析,以测试使用TFM进行热动力学模拟的可靠性和质量。使用某些控制系统工具(例如波特图,阶跃响应,根和极点位置)执行分析。结果清楚地表明,对于非常大的建筑物,仅应用TFM失败,但是如果极点和残差在不同位置重新排序,则有可能解决数值问题。此外,分析表明,采样周期的选择是获得可靠仿真的重要因素。

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