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Decentralized substations for low-temperature district heating with no Legionella risk, and low return temperatures

机译:用于低温区域供热的分散式变电站,没有军团菌风险,回程温度低

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摘要

To improve energy efficiency and give more access to renewable energy sources, low-temperature district heating (LTDH) is a promising concept to be realized in the future. However, concern about Legionella proliferation restricts applying low-temperature district heating in conventional systems with domestic hot water (DHW) circulation. In this study, a system with decentralized substations was analysed as a solution to this problem. Furthermore, a modification for the decentralized substation system were proposed in order to reduce the average return temperature. Models of conventional system with medium-temperature district heating, decentralized substation system with LTDH, and innovative decentralized substation system with LTDH were built based on the information of a case building. The annual distribution heat loss and the operating costs of the three scenarios were calculated and compared. From the results, realizing LTDH by the decentralized substation unit, 30% of the annual distribution heat loss inside the building can be saved compared to a conventional system with medium-temperature district heating. Replacing the bypass pipe with an in-line supply pipe and a heat pump, the innovative decentralized substation system can reduce distribution heat loss by 39% compared to the conventional system and by 12% compared to the normal decentralized substation system with bypass.
机译:为了提高能源效率并提供更多可再生能源,低温集中供热(LTDH)是一个有希望在未来实现的概念。但是,对军团菌扩散的关注限制了在具有生活热水(DHW)循环的常规系统中应用低温区域供暖。在本研究中,分析了具有分散式变电站的系统,以解决此问题。此外,为了降低平均返回温度,提出了对分散式变电站系统的修改。基于案例信息,建立了传统的中温区域供热系统,带LTDH的分散式变电站系统和带LTDH的创新式分散式变电站系统的模型。计算并比较了三种情况下的年度分布热损失和运营成本。从结果来看,与传统的中温区域供热系统相比,通过分散式变电站实现LTDH,可以节省建筑物内部每年30%的分布热量损失。创新的分散式变电站系统用在线供应管和热泵代替了旁通管,与传统系统相比,与传统的带旁路的分散式变电站系统相比,可将配电热量损失降低39%,与传统的分散式变电站系统相比,可降低12%。

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