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Energy Flexibility through the Integrated Energy Supply System in Buildings: A Case Study in Sweden

机译:通过建筑物中的集成能源系统的能量灵活性:瑞典案例研究

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The increasing penetration level of renewable energies requires more flexibility measures at the consumption side.Flexible energy prices have been placed by energy providers to promote flexibility measures from energy users.However,because of the current energy supply system in buildings,these flexible energy prices haven’t been fully taken advantage of.This study focuses on the integrated energy supply system in buildings.A Swedish office building is used as the case study.The integrated energy supply system is built by installing new components,including battery,heat pump and electrical heater,and hot water tank.Mixed Integer Linear Programming(MILP)problems are solved to determine the optimal component capacities and operation profiles.The results indicate that all the studied system configurations achieve lower net present cost(NPC)than the current system.It suggests that the integrated energy supply system can take advantage of the flexible energy prices and lower the overall energy cost in the building.Among the studied configurations,the combination of air source heat pump(ASHP)and electrical heater(EH)has the lowest investment cost.This combination also has the lowest NPC except in the scenario with low borehole cost.
机译:不断增长的可再生能源的渗透水平需要在消费方面需要更多的灵活性措施。能源提供者已经倾向于互惠的能源价格,以促进能源用户的灵活性措施。然而,由于当前建筑物的能源系统,这些灵活的能源价格尚未'T已充分利用。本研究专注于建筑物中的综合能源系统。瑞典办公楼被​​用作案例研究。通过安装新的组件,包括电池,热泵和电气,构建了集成的能源系统。加热器和热水坦克。确定整数线性编程(MILP)问题以确定最佳分量容量和操作配置文件。结果表明所有研究的系统配置都比当前系统实现了较低的净成本(NPC).it表明,综合能源供应系统可以利用灵活的能源价格和降低整体杆GY成本在建筑物中.AMONG学习的配置,空气源热泵(ASHP)和电加热器(EH)的组合具有最低的投资成本。该组合还具有最低的NPC,除了钻孔成本低的场景。

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