提高变工况建筑供热系统的能源利用效率

O. Klymchuk, Alla Denysova, G. Balasanian, L. Ivanova
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引用次数: 5

摘要

研究结果确定了联合供热系统中各种热源利用效率的特征指标。在研究过程中,考虑了供热系统中蓄热器集成的各种方案。水被用作电池,也可以作为冷却剂。对间歇式供热联供系统的过程进行了数学建模。考虑到热消费者的工作模式,确定了供热系统元件的特征工作模式。利用一个软件包进行数学建模,该软件包可以根据供热系统的主要元件及其特征运行方式获得供热系统的热功率分布。根据研究结果,提出了热功率减小系数和蓄热器体积利用效率系数。这些系数允许评估热源的效率和使用储热罐体积的效率。根据获得的数据,在考虑储罐安装的情况下,设置优化热源日负荷的任务。研究结果可用于两期运行模式(运行值班)的建筑供热系统改造,可同时使用传统热源和可再生热源。这将显著提高供热系统元件的使用效率,平衡每日产热时间表,增加主要设备的使用寿命
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Efficiency of Using Energy Resources in Heat Supply Systems of Buildings With Variable Operation Mode
As a research result, characteristic indicators of the efficiency of using various heat sources in combined heat supply systems were determined. During the study, various schemes for integrating heat accumulators in heat supply systems were considered. Water was used as a battery, which also acts as a coolant. Mathematical modeling of processes in combined heat supply systems using intermittent heating is carried out. The characteristic operating modes of the elements of heat supply systems that take into account the operating modes of heat consumers are determined. Mathematical modeling was carried out using a software package that allows to obtain the distribution of heat power of the heat supply system by its main elements and its characteristic operation modes. According to the research results, a coefficient of thermal power reduction and a coefficient of efficiency of using the heat accumulator volume were proposed. These coefficients allow to evaluate the efficiency of heat sources and the efficiency of using the volume of the heat storage tank. Based on the obtained data, the task was set to optimize the daily load of the heat source, taking into account the installation of the storage tank. The research results can be used for the reconstruction of heat supply systems of buildings with a two-period operation mode (operation duty) using both traditional and renewable heat sources. This will significantly increase the efficiency of the use of elements of the heat supply system, even out the daily heat generation schedule and increase the service life of the main equipment
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