Optimal frequency of temperature change of a heat transfer agent on a heat source and the influence of the rate of change thereof on heat energy loss

I. G. Akhmetova, K. Lapin
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Abstract

THE PURPOSE. In modern realities, the operation of heat networks of the district heating system involves a constant search for ways to minimize heat energy losses. METHODS. Therefore, the task of minimizing heat energy losses while controlling the temperature of the supplied heat transfer medium from the sources of heat becomes very important. When operating district heating networks in the Russian Federation, regulation of heat supply to consumers during the heating period is carried out depending on the outside air temperature, as a rule, in two ways: qualitative method by changing the water temperature in the supply main of the heating network; qualitative-quantitative method by changing the temperature and water consumption in the supply main of the heating network. The methods of regulation used are related to the need to maintain a stable hydraulic mode of heat networks. Actions on the regulation of heat supply to consumers are performed at the heat source in accordance with the indication of the heat network dispatcher according to the approved temperature schedule for the heat supply system. RESULTS. This paper presents the results of a study of the dependence of changes in the actual heat losses for the section of the heating network, which is during the operation process in a non-stationary mode. Criteria for setting the temperature of the heat carrier at the heat source required to meet the temperature schedule by the heat network dispatcher are proposed. The results obtained can also be used in organizations operating district heating networks to ensure the regulation of the heating network operation mode with minimum heat losses. CONCLUSION. The nature of changing the temperature of the supplied coolant in the network (the interval of setting a new value and the rate of temperature change) directly affects the heat energy losses in the surrounding pipeline environment, resulting from the temperature gradient of the coolant in the pipeline and the environment. Given the fact that the values of the temperature of the outside air, heat-carrier, affecting the operating mode of the heating system is constantly changing over time, the processes of heat-exchange (heat transfer) between the coolant and the environment surrounding the pipeline are unsteady. The work reviewed the current requirements of regulatory and technical documents on the setting of the heating network operation mode, analyzed the factors affecting changes in the mode of the heating system.
一种传热剂在热源上的温度变化的最佳频率及其变化率对热能损失的影响
的目的。在现代现实中,区域供热系统热网的运行涉及不断寻找减少热能损失的方法。方法。因此,最小化热能损失,同时控制来自热源的供热介质的温度的任务变得非常重要。当在俄罗斯联邦运行区域供热网络时,在供暖期间对消费者的供热调节通常取决于外部空气温度,通常有两种方式:通过改变供热网络供应总管中的水温的定性方法;通过改变供热管网供水管的温度和用水量,进行定性定量分析。所使用的调节方法与保持热网的稳定水力模式的需要有关。在热源处,根据热网调度员根据认可的供热系统温度表的指示,对消费者的供热进行调节。结果。本文研究了供热网在非平稳运行过程中实际热损失变化的依赖关系。提出了满足热网调度器温度调度要求的热源处热载体温度的设定标准。所得结果也可用于组织运行区域供热网络,以确保以最小的热损失调节供热网络的运行模式。结论。供冷剂在管网中温度变化的性质(设定新值的间隔时间和温度变化的速率)直接影响到周围管道环境中的热能损失,这是由于管道和环境中冷却剂的温度梯度造成的。由于影响供热系统运行方式的热载体外部空气的温量值随时间不断变化,因此冷却剂与管道周围环境之间的换热(换热)过程是不稳定的。工作回顾了现行法规和技术文件对供热网络运行方式设置的要求,分析了影响供热系统运行方式变化的因素。
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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