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首页> 外文期刊>Energies >Energetic and Economic Assessment of Pipe Network Effects on Unused Energy Source System Performance in Large-Scale Horticulture Facilities
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Energetic and Economic Assessment of Pipe Network Effects on Unused Energy Source System Performance in Large-Scale Horticulture Facilities

机译:管网对大型园艺设施中未使用能源系统性能影响的能量和经济评估

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As the use of fossil fuel has increased, not only in construction, but also in agriculture due to the drastic industrial development in recent times, the problems of heating costs and global warming are getting worse. Therefore, the introduction of more reliable and environmentally-friendly alternative energy sources has become urgent and the same trend is found in large-scale horticulture facilities. In this study, among many alternative energy sources, we investigated the reserves and the potential of various different unused energy sources which have infinite potential, but are nowadays wasted due to limitations in their utilization. This study investigated the effects of the distance between the greenhouse and the actual heat source by taking into account the heat transfer taking place inside the pipe network. This study considered CO2 emissions and economic aspects to determine the optimal heat source. Payback period analysis against initial investment cost shows that a heat pump based on a power plant’s waste heat has the shortest payback period of 7.69 years at a distance of 0 km. On the other hand, the payback period of a heat pump based on geothermal heat showed the shortest payback period of 10.17 year at the distance of 5 km, indicating that heat pumps utilizing geothermal heat were the most effective model if the heat transfer inside the pipe network between the greenhouse and the actual heat source is taken into account.
机译:随着近代工业的迅猛发展,不仅在建筑领域而且在农业领域,化石燃料的使用都在增加,供热成本和全球变暖的问题越来越严重。因此,迫切需要引入更加可靠和环保的替代能源,并且在大型园艺设施中也发现了同样的趋势。在这项研究中,我们研究了许多替代能源中具有无限潜力的各种不同未使用能源的储量和潜力,但由于使用受限,如今这些资源已被浪费。该研究通过考虑管网内部发生的热传递来研究温室与实际热源之间的距离的影响。这项研究考虑了CO 2 的排放和经济因素,以确定最佳的热源。根据初始投资成本进行的投资回收期分析表明,以发电厂废热为基础的热泵在0公里处的最短投资回收期为7.69年。另一方面,基于地热的热泵的投资回收期在5 km距离处显示最短的投资回收期10.17年,这表明如果管道内的热传递,利用地热的热泵是最有效的模型。考虑到温室和实际热源之间的网络。

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