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Integration of large-scale heat pumps in the district heating systems of Greater Copenhagen

机译:在大哥本哈根的区域供热系统中集成大型热泵

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摘要

This study analyses the technical and private economic aspects of integrating a large capacity of electric driven HP (heat pumps) in the Greater Copenhagen DH (district heating) system, which is an example of a state-of-the-art large district heating system with many consumers and suppliers. The analysis was based on using the energy model Balmorel to determine the optimum dispatch of HPs in the system. The potential heat sources in Copenhagen for use in HPs were determined based on data related to temperatures, flows, and hydrography at different locations, while respecting technical constraints. The Balmorel model was developed further in order to provide a better representation of HPs, for analysing the seasonal variations of COP (Coefficient of Performance), and to represent the difference in performance of HPs connected to either distribution or transmission networks. The optimization yields roughly 3500 FLH (full load hours) for the HPs connected to the DH distribution networks when considering a current scenario. In a zero carbon-dioxide emission scenario expected in year 2025, approximately 4000 FLH, are achieved. In the case where HPs are connected to the DH transmission network at elevated temperatures, their operation decreases by roughly 1000 FLH. No significant impact was found when comparing fixed and varying operation characteristics of the HP.
机译:这项研究分析了在大哥本哈根DH(区域供热)系统中集成大容量电动HP(热泵)的技术和私人经济方面,这是最新的大型区域供热系统的一个示例与许多消费者和供应商。该分析基于使用能量模型Balmorel来确定系统中HP的最佳分配。根据与不同地点的温度,流量和水文学相关的数据,在考虑到技术限制的情况下,确定了哥本哈根中用于HP的潜在热源。 Balmorel模型被进一步开发,以提供更好的HP表示,以分析COP(性能系数)的季节性变化,并表示连接到配电网或输电网络的HP的性能差异。考虑到当前情况,该优化可为连接到DH分配网络的HP产生大约3500 FLH(满负载小时)。在预计到2025年二氧化碳排放量为零的情况下,将实现约4000 FLH的排放量。在高温下将HP连接到DH传输网络的情况下,它们的运行将减少大约1000 FLH。比较HP的固定和变化操作特性时,没有发现重大影响。

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