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A study on optimum insulation thickness in walls and energy savings in Tunisian buildings based on analytical calculation of cooling and heating transmission loads

机译:基于冷热传递负荷的解析计算,研究突尼斯建筑物墙体的最佳保温厚度和节能效果

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In Tunisian climate, both heating in winter and cooling in summer are required to reach comfort levels. Due to the significant increase in building energy consumption, insulation of external walls is recently applied with a thickness typically ranging between 4 cm and 5 cm regardless of structure and orientation of walls and of economic parameters. In the present study, optimum insulation thickness, energy saving and payback period are calculated for a typical wall structure based on both cooling and heating loads. Yearly transmission loads are rigorously estimated using an analytical method based on Complex Finite Fourier Transform (CFFT). Considering different wall orientations, the west and east facing walls are the least favourite in the cooling season, whereas the north-facing wall is the least favourite in the heating season. A life-cycle cost analysis over a building lifetime of 30 years shows that the south orientation is the most economical with an optimum insulation thickness of 10.1 cm, 71.33% of energy savings and a payback period of 3.29 years. It is noted that wall orientation has a small effect on optimum insulation thickness, but a more significant effect on energy savings which reach a maximum value of 23.78 TND/m~2 in the case of east facing wall. A sensitivity analysis shows that economic parameters, such as insulation cost, energy cost, inflation and discount rates and building lifetime, have a noticeable effect on optimum insulation and energy savings. Comparison of the present study with the degree-days model is also performed. ? 2010 Elsevier Ltd. All rights reserved..
机译:在突尼斯的气候中,冬季供暖和夏季制冷都需要达到舒适水平。由于建筑能耗的显着增加,最近不考虑墙壁的结构和方向以及经济参数,通常以介于4厘米至5厘米之间的厚度进行外墙保温。在本研究中,基于冷却和加热负荷,计算了典型墙体结构的最佳隔热厚度,节能和投资回收期。使用基于复杂有限傅立叶变换(CFFT)的分析方法,可以严格估计每年的传输负载。考虑到不同的墙体朝向,在冷却季节,朝西和朝东的墙是最不喜欢的,而在采暖季节,朝北的墙是最不喜欢的。在30年的建筑寿命中进行的生命周期成本分析表明,向南定位最经济,其最佳隔热厚度为10.1厘米,可节省71.33%的能源,投资回收期为3.29年。值得注意的是,墙面朝向对最佳保温厚度影响不大,而节能效果则更为显着,在朝东墙的情况下,最大值达到23.78 TND / m〜2。敏感性分析表明,诸如保温成本,能源成本,通货膨胀率和折现率以及建筑寿命之类的经济参数对最佳保温和节能有显着影响。还进行了本研究与学位-天数模型的比较。 ? 2010 Elsevier Ltd.保留所有权利。

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