MODERN ARCHITECTURE AND ENERGY EFFICIENCY

O. Filonenko, O. Yurin, N. Mahas, V. Rudenko, P. Semko, B. Tokaŕ
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Abstract

The article analyzes the design solutions for the outer walls of residential buildings built in 2020-2022 in a city that belongs to the II temperature zone of Ukraine. The outer walls of the monolithic reinforced concrete frame of the building are made of hollow brick 250 mm thick with a façade system of heat-insulating and finishing class A. A verification thermotechnical calculation of the outer wall was carried out, taking into account heat-conducting inclusions, the reduced heat transfer resistance of an opaque enclosing structure (wall) does not correspond to the minimum allowable value of heat transfer resistance of the corresponding structure according to DBN V.2.6 – 31:2016 for the II temperature zone. When taking into account the effect of air permeability on reducing the overall level of thermal protection of the fence, it was determined that the calculated reduced value of the resistance to heat transfer of the outer wall will be even lower due to the fact that the structure consists of light cellular materials with a significant breathability. External enclosing structures and internal, dividing rooms with a temperature difference of 4 ° C or more, have insufficient insulation thickness. When developing insulation measures, the effect of air filtration through wall structures made of lightweight materials is not taken into account. The requirements for the insulation of complex structural units of enclosing structures to prevent the formation of "cold bridges", for example, a balcony slab, are not met. Translucent structures, which occupy more than 50% of the facades, are the cheapest, their heat transfer resistance is less than the minimum allowable value. Based on the results of the analysis, the main measures to improve the energy efficiency of residential multi-storey buildings were identified to enable the installation of large windows in residential and public buildings in the climatic conditions of Ukraine. 
现代建筑和能源效率
本文分析了乌克兰某II型温区城市2020-2022年建成住宅外墙的设计方案。建筑整体钢筋混凝土框架的外墙由250毫米厚的空心砖制成,采用a级隔热和饰面的farade系统。考虑到导热内含物,对外墙进行了热工计算验证。不透明封闭结构(墙)的减小的传热阻力不符合DBN V.2.6 - 31:16对II温度区相应结构的传热阻力的最小允许值。当考虑到透气性对降低围栏整体热防护水平的影响时,由于结构由具有显著透气性的轻质蜂窝材料组成,因此确定计算出的外墙传热阻力降低值将更低。外部围护结构与温差大于等于4℃的内部分隔室保温厚度不足。在制定保温措施时,没有考虑轻质材料制成的墙体结构对空气过滤的影响。不满足围护结构复杂结构单元的保温要求,以防止形成“冷桥”,例如,阳台板。半透明结构占立面的50%以上,是最便宜的,它们的传热阻力小于最小允许值。根据分析结果,确定了提高住宅多层建筑能源效率的主要措施,以便在乌克兰的气候条件下在住宅和公共建筑中安装大窗户。
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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