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A new generation of district heating system with neighborhood-scale heat pumps and advanced pipes, a solution for future renewable-based energy systems

机译:带有社区规模热泵和先进管道的新一代区域供热系统,是未来可再生能源系统的解决方案

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District heating (DH) systems are one of the main components of future energy systems as they can significantly contribute to the transition towards a 100% renewable-based supply. Employing heat pumps in the substation of DH end-users has already been investigated, finding the periodic use of heat pumps an economic challenge. This work proposes neighborhood-scale heat pumps in an ultralow-temperature DH system to increase their utilization factor and thereby, improving the cost-effectiveness. As such, triple-pipes (TPs) are used instead of conventional twin-pipes (TwPs) to separate hot water (HW) line from space heating (SH) line, decreasing the size of heat pumps and the rate of losses. Heat pumps only increase the temperature of the HW supply line. The suggested DH system is designed and analyzed thermodynamically for a sample network, and the results are compared with a low-temperature DH system, as the most important competitor to the proposed solution. The results show that the proposed system is better than the competing solution in terms of an overall efficiency point of view. For three typical hot/medium/cold days in the network, the daily thermal losses of the proposed and low-temperature systems are 155.2/557.5/913.4 kWh and 182.3/692.8/1053.2 kWh, respectively.
机译:区域供热(DH)系统是未来能源系统的主要组成部分之一,因为它们可以极大地促进向100%可再生能源供应的过渡。已经对在DH最终用户的变电站中使用热泵进行了研究,发现定期使用热泵是一项经济挑战。这项工作提出了一种超低温DH系统中的邻域规模的热泵,以提高其利用率,从而提高成本效益。因此,使用三重管道(TPs)代替传统的双重管道(TwPs)将热水(HW)管道与空间加热(SH)管道分开,从而减小了热泵的尺寸和损失率。热泵只会增加硬件供应管线的温度。建议的DH系统是针对样品网络进行热力学设计和分析的,结果与低温DH系统进行了比较,低温DH系统是所提出解决方案的最重要竞争对手。结果表明,从整体效率的角度来看,该系统优于竞争解决方案。对于网络中的三个典型的热/中/冷天,拟议和低温系统的每日热损失分别为155.2 / 557.5 / 913.4 kWh和182.3 / 692.8 / 1053.2 kWh。

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