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The combined impact of energy efficiency and embodied energy of external wall over 30 years of life cycle

机译:在30年的生命周期内外墙的能效和体现能量的综合影响

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Decreasing the energy consumption in production and building activity is the main aim nowadays as well as in the future. Taking into account that almost 50% of European Union's final energy consumption is used for heating and cooling, of which 80% is used in buildings it is essential to minimize this amount beforehand. Looking at the energy losses we see that the main heat losses are caused due to the transmission through the envelope and ventilation system. EU energy efficiency target for buildings to 2030 is at least 32.5%. According to this, national energy efficiency action plans were done, which mean that existing building stock need renovation and new buildings will be constructed according to the energy efficiency requirements. One important factor to improve energy efficiency is to modify thermal transmittance of the envelope. In 2017 minimum energy efficiency requirements were validated in Estonia and determined that the thermal conductance of outer wall must be less than 0.22 W m-2 K-1 (recommended range of U = 0.12 0.22 W m-2 K-1). According to this the energy loss through the envelope was calculated over the year taking degree-days as bases. In our area this number is 4,933 degree days per year, what gives us the calculated heat loss through the envelope 10.22 kWh m-2 if the thermal conductance of the wall is 0.092 W m-2 K-1. This required value of thermal conductance we can achieve using good insulation materials. Still there are possibilities to choose between insulations. Done tests and calculations allow to conclude that energy consumption during building life cycle together with embodied energy of building materials gives us more realistic overview of the energy efficiency of the building. Our results confirm that the use of local natural insulation materials is 1.67 times more sustainable and energy saving than using industrial materials.
机译:减少生产和建筑活动的能源消耗是现在的主要目标以及未来。考虑到近50%的欧盟最终能源消耗用于加热和冷却,其中80%用于建筑物中,必须事先最小化这一数量。看着能量损失我们看到由于通过信封和通风系统的传输导致主热损失。建筑物的欧盟能源效率目标为2030年至少为32.5%。据此,国家能源效率行动计划已经完成,这意味着现有的建筑物股票需要改造和新建筑物将根据能源效率要求构建。提高能量效率的一个重要因素是改变信封的热透射率。 2017年,在爱沙尼亚验证了最低能源效率要求,并确定外壁的导热率必须小于0.22 W m-2 k-1(推荐的U = 0.12 0.22 W m-2 k-1)。根据这种情况,通过信封的能量损失是根据基础为基础的年度的年度计算。在我们的地区,这个号码是每年4,933度,是什么让我们通过信封10.22kwh m-2给出了计算的热量损失,如果壁的导热率为0.092W m-2 k-1。这种所需的热导流值我们可以使用良好的绝缘材料来实现。仍有可能选择绝缘之间的可能性。完成的测试和计算允许得出结论,在建造生命周期的能量消耗以及建筑材料的体现能量,使我们更现实地概述了建筑的能源效率。我们的结果证实,局部天然绝缘材料的使用比使用工业材料更具可持续和节能的1.67倍。

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