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Energy and environmental analysis of an open-loop ground-water heat pump system in an urban area

机译:市区开环地下水热泵系统的能源与环境分析

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In this paper a multidisciplinary methodology for analyzing the opportunities for exploitation of open-loop groundwater heat pump is proposed. The approach starts from a model for calculation of a time profile of thermal requirements (heat and domestic hot water). This curve is then coupled with a model of the control system in order to determine the heat pump operation, which includes its energy performances (primary energy consumption) as well as profiles of water discharge to the aquifer in terms of mass flow rate and temperature. Then the thermo-fluid dynamics of the aquifer is performed in order to determine the system impact on the environment as on possible other systems. The application to a case study in the Piedmont region, in Italy, is proposed. Energy analysis of the system shows that ground-water heat pumps constitute an interesting option in areas with small housing density, where there is not district heating. In comparison with typical heating/cooling systems, environmental benefits are related with reduction in global emissions. These benefits may be significantly enhanced using renewables as the primary energy source to produce electricity. The analysis also shows that possible issues related with the extension of the subsurface thermal plume may arise in the case of massive utilization of this technology.
机译:本文提出了一种多学科的方法来分析开环地下水热泵的开发机会。该方法从一个模型开始,该模型用于计算热量需求(热量和生活热水)的时间曲线。然后,将此曲线与控制系统的模型耦合,以确定热泵的运行情况,包括其能量性能(主要能量消耗)以及向水层排放的质量流量和温度方面的曲线。然后执行含水层的热流体动力学,以便确定系统对环境的影响以及对其他系统的影响。建议将其应用于意大利皮埃蒙特地区的案例研究。系统的能量分析表明,在房屋密度小的区域没有区域供热的地区,地下水热泵是一个有趣的选择。与典型的加热/冷却系统相比,环境效益与减少全球排放量有关。使用可再生能源作为发电的主要能源,可以显着提高这些收益。分析还表明,在大规模使用此技术的情况下,可能会出现与地下热羽扩展相关的问题。

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