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Efficient and cost-effective district heating system with decentralized heat storage units, and triple-pipes

机译:具有分散式储热单元和三重管道的高效且经济高效的区域供热系统

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摘要

The novel concept of district heating system with decentralized heat storage units, different supply temperatures and two pairs of parallel twin-pipes was recently proposed and investigated thermodynamically. In this work, the use of triple-pipes for the distribution and service segments of the pipeline of this district heating scheme (where the transmission segment remains with twin-pipe type) is proposed and investigated. For this, computational fluid dynamic methods together with Evolutionary Polynomial Regression/Multi-Objective Genetic Algorithm approach are used to drive reliable correlations for estimating the rate of heat losses from the twin- and triple-pipes. The validity of the numerical simulations and the developed correlations are examined with the available data in the literature. Then, the performance of the specific district heating system in its conventional form and the revised design (i.e. when employing twin- and triple-pipes) is investigated and compared. The results show that the use of triple-pipes for the district heating improves the overall energy efficiency of the system by offering a considerably lower rate of heat loss through the distribution and service pipes. In addition, this eliminates the need for the secondary pairs of distribution and service twin-pipes, decreasing the costs of the system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近提出了具有分散式储热单元,不同的供气温度和两对平行双管的区域供热系统的新概念,并对其进行了热力学研究。在这项工作中,提出并研究了将三重管道用于该区域供热方案的管道的分配和服务段(传输段仍为双管型)。为此,计算流体动力学方法与进化多项式回归/多目标遗传算法方法一起用于驱动可靠的相关性,以估计双管和三管的热损失率。使用文献中的可用数据来检验数值模拟和建立的相关性的有效性。然后,研究并比较了特定区域供热系统的常规形式和修改后的设计(即使用双管和三管时)的性能。结果表明,使用三重管道进行区域供热可通过分配和服务管道显着降低热损失率,从而提高了系统的整体能源效率。此外,这消除了对分配和服务双管的辅助对的需求,从而降低了系统成本。 (C)2019 Elsevier Ltd.保留所有权利。

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