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Optimal placement and sizing of heat pumps and heat only boilers in a coupled electricity and heating networks

机译:热泵的最佳放置和尺寸耦合电和加热网络中的热泵和热锅炉

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摘要

Multi-energy systems are reported to have a better environmental and economic performance relative to the conventional, single-carrier, energy systems. Electrification of district heating networks using heat pumps and combined heat and power technologies is one such example. Due to lack of suitable modelling tools, however, the sizing and optimal placement of heat pumps is always done only from the heating network point of view which sometimes compromises the electricity network. This paper proposes an integrated optimization algorithm to overcome such limitation. A load flow model based on an extended energy hub approach is combined with a nested particle swarm optimization algorithm. A waste to energy combined heat and power plant, heat pumps (HPs), heat only boiler (HOB), solar photovoltaic, wind turbines and imports from the neighborhood grids are considered in the case studies. The results show that optimal placement and sizing of HPs and a HOB using the proposed methodology avoids an unacceptable voltage profiles and overloading of the electricity distribution network, which could arise while optimizing only from the heating network point of view. It also shows that up to 41.2% of the electric loss and 5% of the overall operating cost could be saved. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:据报道,多能量系统相对于传统的单载波,能量系统具有更好的环境和经济性能。使用热泵和组合热和电力技术的区域加热网络的电气化是这样的一个例子。然而,由于缺乏合适的建模工具,热泵的尺寸和最佳放置始终仅从加热网络的观点来看,这有时会妥协电网。本文提出了一种综合优化算法来克服此类限制。基于扩展能量集线器方法的负载流模型与嵌套粒子群优化算法组合。在案例研究中考虑了能量组合热量和电厂,热泵(HPS),热泵(HPS),耐热锅炉(滚刀),太阳能光伏,风力涡轮机和来自邻域网的进口的浪费。结果表明,使用所提出的方法的HPS和滚刀的最佳放置和尺寸避免了电力分配网络的不可接受的电压曲线和过载,这可能仅在从加热网络的角度下优化。它还表明,可以节省高达41.2%的电力损失和5%的整体运营成本。 (c)2019年作者。 elsevier有限公司出版

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