Ensuring the energy efficiency of heat supply energy systems functioning by justifying the choice of glazing units for the external enclosing structures of buildings

V. Koval, Myroslav Zin, Liubov Kostyk, O. Buniak
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Abstract

The article is devoted to the further development and implementation of technologies that allow some considerable reducing energy consumption and, as a result, reduce greenhouse gas emissions. In Ukraine and abroad, a huge amount of heat is lost through the external enclosing structures of buildings. The largest specific heat losses occur through translucent enclosures, in particular, windows, the main elements of which are double-glazed windows. Today, manufacturers offer double-glazed windows, which are characterized by different costs and energy efficiency. The buyer does not know which double-glazed window to choose. We have proposed a clear and understandable method of solving this issue. For example, two different double-glazed windows were considered and a comparison was made on their cost, thermal resistance of heat transfer, and the ability to save certain amounts of heat and money for its purchase during operation. A feasibility study of additional capital investments in double-glazed windows with improved characteristics instead of conventional double-glazed ones has been carried out. Its results show that, at the current stage of the society development, the use of double-glazed windows with improved characteristics, despite their higher cost, is economically more appropriate than conventional double-glazed windows. This applies to external translucent fences of buildings of any purpose and form of ownership - both residential and industrial, public, which are on the balance sheets of local and state budgets, etc. The results of all calculations are explained in detail and presented in the form of a table. In addition, a simple and clear scheme of technical and economic substantiation of additional capital investments in a double-glazed window with improved characteristics is presented instead of an ordinary one, which can be used at the design stages of new construction or thermal renovation of existing buildings to ensure the selection of the most rational structural solutions. The materials of the article can be generalized to any other cases of technical and economic substantiation of the choice of options for technical solutions in energy-efficient projects.
通过合理选择建筑物外部封闭结构的玻璃单元,确保供热能源系统的能源效率
本文致力于进一步发展和实施技术,这些技术可以大大降低能源消耗,从而减少温室气体排放。在乌克兰和国外,大量的热量通过建筑物的外部封闭结构散失。最大的比热损失发生在半透明的外壳,特别是窗户,其主要元素是双层玻璃窗。今天,制造商提供双层玻璃窗,其特点是不同的成本和能源效率。买家不知道该选哪扇双层玻璃窗。我们已经提出了一个解决这个问题的清晰易懂的方法。例如,考虑了两种不同的双层玻璃窗,并对其成本,传热的热阻以及在运行过程中节省一定热量和购买费用的能力进行了比较。对增资改造双层玻璃窗以替代传统双层玻璃窗的可行性进行了研究。研究结果表明,在社会发展的现阶段,使用性能改进的双层玻璃窗,尽管成本较高,但在经济上比传统双层玻璃窗更合适。这适用于任何目的和所有权形式的建筑物的外部半透明围栏-无论是住宅还是工业,公共,都在地方和国家预算的资产负债表上等等。所有的计算结果都作了详细的说明,并以表格的形式提出。此外,本文还提出了一个简单明了的方案,在技术和经济上证明额外的资本投资可以改善双层玻璃窗的特性,而不是普通的双层玻璃窗,可以在新建筑的设计阶段或现有建筑的热改造中使用,以确保选择最合理的结构解决方案。这篇文章的材料可以推广到节能项目中技术解决方案选择的技术和经济实证的任何其他情况。
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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