Efficiency of CHPP Operation in Heat-Supply Systems when the Transition to Lowered and Extended Schedules of Heating Regulation

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2022-08-01 DOI:10.52254/1857-0070.2022.3-55.06
D. Suvorov, N. Tatarinova
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Abstract

The aim of the work is a theoretical study of the efficiency of heat supply based on a software package that includes mathematical models of a real CHPP, a real heating network and real heat consumers with a high share of hot water supply load using extended and reduced temperature schedules of heating regulation. The set aim is achieved by solving the following problems: choosing a method for calculating various schedules of regulating heat supply from CHPPs; construction of initial, reduced and extended temperature schedules and schedules of delivery water consumption; determination of optimal energy costs and heat-transfer agent costs. The most important of the results achieved is the carried analysis of the energy and economic efficiency indicators changes during the transition from the traditional to lowered and extended schedules of heat-supply system regulation. The total fuel savings at CHPP during the transition from the initial design temperature schedule with a maximum delivery water temperature of 150°C to the most energy efficient schedules reaches about 2%, which should be recognized as very significant. The significance of the obtained results lies in the fact that they allow calculating the energy effect in the form of fuel savings at CHPPs compared to their operation with the design temperature schedule. It is shown that the use of these technologies will increase the efficiency of district heating that will ensure a reliable and high-quality supply of heat energy to consumers and reduce its cost.
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供热系统中热电联产的运行效率
这项工作的目的是基于一个软件包对供热效率进行理论研究,该软件包包括真实的CHPP、真实的供热网络和真实的热用户的数学模型,这些热用户使用延长和降低的供暖调节温度计划来承担高份额的热水供应负荷。通过解决以下问题实现了既定目标:选择一种计算CHPP各种调节供热计划的方法;制定初始、降低和延长温度时间表以及输送用水时间表;最佳能量成本和传热剂成本的确定。取得的最重要的成果是对供热系统从传统调度向降低和延长调度过渡期间的能源和经济效率指标变化进行了分析。在从最高输送水温度为150°C的初始设计温度计划过渡到最节能的计划期间,CHPP的总燃料节省量达到约2%,这应该被认为是非常显著的。所获得的结果的重要性在于,与设计温度计划的运行相比,它们允许以CHPP的燃料节省形式计算能量效应。研究表明,这些技术的使用将提高区域供暖的效率,从而确保向消费者提供可靠和高质量的热能,并降低其成本。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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