IMPROVING THE EFFICIENCY OF USING WATER RADIANT HEATING SYSTEMS

O. Synilo
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Abstract

Now, the issue of protecting the environment and reducing the use of fossil non-renewable energy sources is becoming increasingly important. For modern heating and air conditioning systems, it is imperative to reduce emissions of harmful substances, especially CO2. This can be realized by significantly reducing the use of fossil non-renewable fuels and reconstructing engineering systems to the current level of energy saving. The annual growth in demand for fossil fuels will be reduced through the optimization of substations and heat distribution devices, which is a necessary step for the development of the country's industry and economy. Therefore, today the main task is to increase the energy efficiency of the use of resources and increase the potential of alternative types of energy in combination with modern low-temperature energy-efficient heat distribution systems, one of which is radiant water panels. The advantages of radiant heating are the absence of dust transfer, since the convective process of mixing air masses is remote, does not require the connection of electrical power, it is possible to work with low-temperature sources of heat supply, no maintenance is required, since there are no fans, electric motors, bearings, lubricants, filters, etc. The main advantage can be distinguished from the use of additional equipment for destratification, as there is no overheating of the upper zones of the heated building. The article presents the results of improving the method of mounting beam-ceiling fixtures with respect to their orientation in space. The results of numerical calculations indicate the efficiency of mounting the equipment at an angle of 45 degrees, which increases the efficiency by 10 % in relation to the 0° orientation. By achieving this mounting and installation option, the required capacity of the heat supply source is reduced and the amount of energy resources used is reduced.
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提高水辐射采暖系统的使用效率
现在,保护环境和减少使用化石不可再生能源的问题变得越来越重要。对于现代供暖和空调系统来说,减少有害物质尤其是二氧化碳的排放势在必行。这可以通过大幅减少化石不可再生燃料的使用和改造工程系统以达到当前的节能水平来实现。通过优化变电站和配热装置,减少对化石燃料的年增长需求,这是国家工业和经济发展的必要步骤。因此,今天的主要任务是提高资源利用的能源效率,并增加与现代低温节能热分配系统相结合的替代能源类型的潜力,其中之一是辐射水板。辐射加热的优点是没有粉尘传递,由于混合气团的对流过程是远程的,不需要连接电源,可以使用低温热源工作,不需要维护,因为没有风扇,电动机,轴承,润滑剂,过滤器等。主要的优点可以从使用额外的设备进行分层区分,因为没有过热的加热建筑的上部区域。本文介绍了改进梁顶固定装置安装方法的结果,并对其空间定位进行了改进。数值计算结果表明,将设备安装在45度角时,效率比安装在0度角时提高10%。通过实现这种安装和安装选项,减少了所需的热源容量,减少了使用的能源量。
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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