Optimal Thickness of the Heat Insulation Layer for the External Walls

A. Gorshkov
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Abstract

The paper presents the methodology for calculating the heat energy losses via external walls of apartment building before and after additional heat insulation of the facades using mineral wool insulation. Normally, a higher level of thermal insulation of external enclosing structures is provided by a greater thickness of the thermal insulation layer. Additional insulation thickness requires additional investment. The higher the level of thermal insulation of external walling, the less heat is lost through the walls. Therefore, energy saving measures should be considered not only from a technical point of view, but also from an economic point of view. Based on the known parameters of the duration of heating period, investments for additional insulation of the facades in the considered apartment building and values of the operating costs for heating before and after the facades insulation, an estimation of the predicted payback period was evaluated for various thickness of the additional thermal insulation layer (50, 60, 70, 80, 90, 100, 110, 120, 130, 140, 150, 160, 170, 180, 190, 200, 250, 300 and 350 mm). For the considered object an optimal thickness of the additional heat insulation layer is calculated. For that optimal thickness, payback period, calculated with account for heating energy tariffs growth rates and discounted future cash flows, takes its minimal value.
外墙隔热层的最佳厚度
本文介绍了在使用矿棉绝热材料进行外立面额外隔热之前和之后,通过公寓楼外墙计算热能损失的方法。通常,较高水平的外部围护结构的隔热是由较大的保温层厚度提供的。额外的绝缘厚度需要额外的投资。外墙保温等级越高,通过墙体散失的热量越少。因此,节能措施不仅要从技术角度考虑,而且要从经济角度考虑。根据已知的供暖周期参数、所考虑的公寓楼外立面额外保温的投资以及外立面保温前后的供暖运营成本值,对不同厚度的额外保温层(50、60、70、80、90、100、110、120、130、140、150、160、170、180、190、200、250、300和350 mm)的预测投资回收期进行了评估。对于所考虑的对象,计算了附加隔热层的最佳厚度。对于这个最优厚度,考虑到供暖能源关税增长率和贴现的未来现金流计算的投资回收期取最小值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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