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Geothermal source heat pump performance for a greenhouse heating system: an experimental study

机译:温室供热系统的地热源热泵性能:一项实验研究

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Greenhouses play a significant function in the modern agriculture economy even if require great amount of energy for heating systems. An interesting solution to alleviate the energy costs and environmental problems may be represented by the use of geothermal energy. The aim of this paper, based on measured experimental data, such as the inside greenhouse temperature and the heat pump performance (input and output temperatures of the working fluid, electric consumption), was the evaluation of the suitability of low enthalpy geothermal heat sources for agricultural needs such as greenhouses heating. The study was carried out at the experimental farm of the University of Bari, where a greenhouse was arranged with a heating system connected to a ground-source heat pump (GSHP), which had to cover the thermal energy request. The experimental results of this survey highlight the capability of the geothermal heat source to ensue thermal conditions suitable for cultivation in greenhouses even if the compressor inside the heat pump have operated continuously in a fluctuating state without ever reaching the steady condition. Probably, to increase the performance of the heat pump and then its coefficient of performance within GSHP systems for heating greenhouses, it is important to analyse and maximise the power conductivity of the greenhouse heating system, before to design an expensive borehole ground exchanger. Nevertheless, according to the experimental data obtained, the GSHP systems are effective, efficient and environmental friendly and may be useful to supply the heating energy demand of greenhouses.
机译:温室即使在供暖系统中需要大量能源,在现代农业经济中也起着重要作用。减轻能源成本和环境问题的一种有趣的解决方案可能是利用地热能。本文的目的是基于测量的实验数据,例如室内温室温度和热泵性能(工作流体的输入和输出温度,电耗),评估低焓地热热源是否适用于大棚取暖等农业需求。这项研究是在巴里大学的一个实验农场进行的,该农场的温室里装有一个与地源热泵(GSHP)连接的供暖系统,该系统必须满足热能需求。该调查的实验结果突出表明,即使热泵内的压缩机一直在波动状态下连续运行而从未达到稳定状态,地热热源也可以确保适应温室中的热条件。可能是为了提高热泵的性能,然后提高其在GSHP系统中用于加热温室的性能系数,在设计昂贵的井下地面交换器之前,分析并最大化温室加热系统的电导率很重要。然而,根据获得的实验数据,GSHP系统是有效,高效和环境友好的,对于满足温室的热能需求可能有用。

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