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Optimizing the insulation thickness of external wall by a novel 3E (energy, environmental, economic) method

机译:通过新型3E(能源,环境,经济)方法优化外墙的保温厚度

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摘要

One of the main challenges in the building industry is determining the thickness and material of insulations that are used in the external wall. The selection of the above-mentioned parameters depends upon various aspects, including energy, environment, and economy. In many cases, the analysis which is carried out based on each of these aspects leads to different results. In the present study, a comprehensive analysis was carried out based on energy, environment, and economy criteria where the energy, environment, and economic costs of producing insulations are also taken into account. Accordingly, material and optimum thickness of insulation for the external wall of an office building were determined. The results showed that Polyurethane with the thickness of 8 cm, EPS with the thickness of 20 cm, and Rockwool with the thickness of 7 cm were optimum states with regard to the aspects of energy, environment, and economy respectively. Finally, a novel function, which considered all three parameters simultaneously, was defined. Consequently, 3E (energy, environmental, and economic) analysis was carried out and led to the presentation of the Mineral wool insulation with the thickness of 11 cm as the optimum state of investigated cases according to the 3E criterion. (C) 2019 Elsevier Ltd. All rights reserved.
机译:建筑行业的主要挑战之一是确定外墙所用保温材料的厚度和材料。上述参数的选择取决于各个方面,包括能源,环境和经济性。在许多情况下,基于这些方面中的每一个进行的分析会导致不同的结果。在本研究中,基于能源,环境和经济标准进行了综合分析,其中还考虑了生产绝缘材料的能源,环境和经济成本。因此,确定了用于办公大楼的外墙的材料和最佳的隔热厚度。结果表明,就能量,环境和经济性而言,厚度为8 cm的聚氨酯,厚度为20 cm的EPS和厚度为7 cm的岩棉是最佳状态。最后,定义了一个同时考虑所有三个参数的新颖函数。因此,进行了3​​E(能源,环境和经济)分析,并根据3E准则提出了厚度为11 cm的矿棉隔热材料作为调查案例的最佳状态。 (C)2019 Elsevier Ltd.保留所有权利。

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