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Optimisation for interconnected energy hub system with combined ground source heat pump and borehole thermal storage

机译:结合地源热泵和井下蓄热的互联能源枢纽系统的优化

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摘要

Ground source heat pumps (GSHP) give zero-carbon emission heating at a residential level. However, as the heat is discharged, the temperature of the ground drops, leading to a poorer efficiency. Borehole inter-seasonal thermal storage coupled with GSHP maintains the efficiency at a high level. To adequately utilize the high performance of combined GSHP and the borehole system to further increase system efficiency and reduce cost, such a combined heating system is incorporated into the interconnected multi-carrier system to support the heat load of a community. The borehole finite element (FE) model and an equivalent borehole transfer function are proposed and respectively applied to the optimisation to analyze the variation of GSHP performance over the entire optimisation time horizon of 24 h. The results validate the borehole transfer function, and the optimisation computation time is reduced by 17 times compared with the optimisation using the FE model.
机译:地源热泵(GSHP)在住宅级别提供零碳排放加热。但是,随着热量的释放,地面温度下降,导致效率降低。钻孔季节间储热系统与GSHP结合可将效率保持在较高水平。为了充分利用组合式GSHP和井眼系统的高性能来进一步提高系统效率并降低成本,将这种组合式加热系统并入互连的多载体系统中以支持社区的热负荷。提出了井眼有限元模型和等效的井眼传递函数,并将其分别应用到优化中,以分析GSHP性能在整个优化时间范围内(24小时)的变化。结果验证了井眼传递函数,与使用有限元模型进行优化相比,优化计算时间减少了17倍。

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