Modernization of local heat distribution stations of city heat supply system

Yu. A. Gorinov, P. N. Anisimov, E. V. Egoshin
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Abstract

The PURPOSE of this work is to develop technical solutions to increase the efficiency of functioning of centralized urban heating systems by modernizing local heat distribution stations. The article considers the issues of functioning of district heating systems with open water intake. The work presents technical solutions that increase the efficiency of the local heat distribution station with a hot water supply unit. A technological scheme has been developed, the selection of equipment has been made. The feasibility of using the developed technical solutions is confirmed by technical, economic and investment indicators. The objectivity of determining the technical and economic effect of the modernization of the local heat distribution station is ensured by comparing the obtained indicators of the modernized and similar facilities.METHODS. To fulfill the objectives of the study, the following methods were applied: full-scale tests on a real object; processing of experimental data using application programs; feasibility study in the municipal heat power industry.THE RESULTS show an improvement in the technical and economic performance of the heating and hot water supply system of an apartment building in Yoshkar-Ola city: reduced network water consumption by 36–39%; temperature drop in the return pipeline was 13.5%; the heat content of hot water has been reduced to 0.168 Gcal/m3 (normative heat content is 0.145 Gcal/m3), the required circulation was ensured in all risers of the hot water supply system. The total losses from October 2021 to September 2022 are 3486,4 Gcal or 11.4% of heat supplied to consumers, which is less than 13% set by the tariff. Compared to a similar house without a regulation depending on the outside air temperature, the consumption of thermal energy during the heating season is reduced by 80 Gcal (10.9%).CONCLUSION. The new scheme of a local heat distribution station has been proposed, including the regulation of domestic hot water (DHW) recirculation, as well as the installation of a hydroelevator with weather regulation. The developed technical solution is relevant for district heating systems with open water intake. For the first time, an experimental study of the effect of the joint installation of the following equipment was carried out: a pump and a control valve on the DHW recirculation line before the recirculation mixing unit with the return pipeline of the heating system; hydraulic elevator with weather regulation. The results of the study can be used in the feasibility study of similar circuit solutions for the modernization of DHW systems. Operating experience has shown that the application of the developed technological scheme of local heat distribution station has positive effects: reduction of network water consumption, temperature in the return pipeline and heat losses; improvement of circulation in all risers of the DHW system; reduction of thermal energy consumption during the period of the “lower” cutoff of the temperature graph; curbing the growth of tariffs for thermal energy.
城市供热系统地方供热站的现代化改造
这项工作的目的是制定技术解决方案,通过对当地供热站进行现代化改造,提高城市集中供热系统的运行效率。文章考虑了开放式取水口区域供热系统的运行问题。文章提出了提高带热水供应装置的地方供热站效率的技术解决方案。已经制定了技术方案,并对设备进行了选择。技术、经济和投资指标证实了采用所制定的技术方案的可行性。通过比较现代化设施和类似设施所获得的指标,确保了确定当地供热站现代化技术和经济效果的客观性。 为实现研究目标,采用了以下方法:在真实物体上进行全面测试;使用应用程序处理实验数据;在市政热电行业进行可行性研究。结果表明,Yoshkar-Ola 市一栋公寓楼的供暖和热水供应系统的技术和经济性能得到了改善:管网耗水量减少了 36-39%;回水管的温降为 13.5%;热水的热含量降低到了 0.168 Gcal/m3(标准热含量为 0.145 Gcal/m3),热水供应系统的所有立管都保证了所需的循环。从 2021 年 10 月到 2022 年 9 月,总损失量为 3486.4 千兆卡,占用户供热量的 11.4%,低于费率规定的 13%。与没有根据室外气温进行调节的类似房屋相比,供暖季节的热能消耗减少了 80 千兆卡(10.9%)。我们提出了新的本地热量分配站方案,包括调节生活热水(DHW)再循环,以及安装带天气调节功能的水力电梯。所开发的技术解决方案适用于开放式取水的区域供热系统。首次对联合安装以下设备的效果进行了实验研究:在供热系统回水管道与再循环混合装置之前的 DHW 再循环管道上安装泵和控制阀;带天气调节功能的水力电梯。研究结果可用于类似电路解决方案的可行性研究,以实现 DHW 系统的现代化。运行经验表明,应用所开发的当地热量分配站技术方案具有积极的效果:降低管网耗水量、回流管道温度和热量损失;改善 DHW 系统所有立管的循环;减少温度曲线图 "较低 "截止期间的热能消耗;抑制热能费用的增长。
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