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5th generation district heating and cooling systems: A review of existing cases in Europe

机译:第五代区域供热和制冷系统:欧洲现有案例的回顾

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This article investigates 40 thermal networks in operation in Europe that are able to cover both the heating and cooling demands of buildings by means of distributed heat pumps installed at the customer substations. The technology of thermal networks that work at a temperature close to the ground, can strongly contribute to the decarbonisation of the heating and cooling sector and furthermore exploit a multitude of low temperature heat sources. Nevertheless, the nomenclature used in literature shows that misinterpretations could easily result when comparing the different concepts of thermal networks that operate at a temperature level lower than traditional district heating. The scope of this work is to revise the definitions encountered and to introduce an unambiguous definition of Fifth-Generation District Heating and Cooling networks. A drawback-benefit analysis is presented to identify the pros and cons of such technology. The survey on the current networks shows that on average three Fifth-Generation District Heating and Cooling systems per year have entered the heating and cooling market in the last decade. Pioneer countries in such technology are Germany and Switzerland. For some networks, the assessed Linear Heating Power Demand Density results are lower than the feasibility threshold adopted in traditional district heating. High performances and low non-renewable primary energy factors are achieved in systems that exploit a very high share of renewable or urban excess heat sources. With respect to traditional district heating, the surveyed pumping energy consumptions result one order of magnitude higher, whereas the implemented control strategies can be completely different, leading the network temperature to float freely.
机译:本文研究了在欧洲运营的40个热网络,这些热网络能够通过安装在客户变电站中的分布式热泵满足建筑物的供热和制冷需求。在接近地面的温度下工作的热网技术可以极大地促进供热和制冷行业的脱碳,并且还可以利用多种低温热源。然而,文献中使用的术语表明,当比较在低于传统区域供热的温度水平下运行的热网络的不同概念时,很容易造成误解。这项工作的范围是修订遇到的定义并引入第五代区域供热和制冷网络的明确定义。提出了弊端效益分析以识别这种技术的利弊。对当前网络的调查显示,在过去的十年中,平均每年有三个第五代区域供热和制冷系统进入供热和制冷市场。这种技术的先驱国家是德国和瑞士。对于某些网络,评估的线性加热功率需求密度结果低于传统集中供热所采用的可行性阈值。在利用可再生或城市过量热源的很大一部分的系统中,可以实现高性能和低不可再生的一次能源因素。对于传统的区域供热,所调查的抽水能耗高出一个数量级,而实施的控制策略可能完全不同,导致网络温度自由浮动。

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