中亚地源热泵系统:以塔吉克斯坦杜尚别为例

IF 3.5 2区 工程技术 Q3 ENERGY & FUELS
Saeid Mohammadzadeh Bina , Hikari Fujii , Dursulton Qaisova , Richard Lein , Jamshed Rahmatov , Fumiaki Inagaki
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引用次数: 0

摘要

本研究通过首次对塔吉克斯坦杜尚别市现有项目进行建模,评估了地源热泵地源热泵系统在该城市供暖和制冷应用中的适用性。鉴于该地区有限的能源资源和对水电的严重依赖,地源热泵系统为一个以供暖为主的气候国家的可持续供暖和制冷需求提供了一个有希望的解决方案。该研究采用了经过现场实际记录数据验证的数值模拟,并提供了短期和长期性能的综合分析,分别计算了冬季和夏季的制热和制冷性能系数(COP)。在FEFLOW软件中开发的模型使用TRT数据进行了完美验证,这些数据包括GHE的出口温度,以及从测试开始到测试完成后48小时插入GHE回油管的光纤传感器记录的地面温度曲线。长期模拟结果表明,在10年的运行过程中,最低地温仅下降了约1.3°C, COP下降约0.28,性能尚可接受。结果突出了地源热泵系统在提高该国以及中亚的能源效率和可靠性方面的潜力。这项开创性的研究证明了地源热泵技术在塔吉克斯坦的可行性,为该地区未来的能源规划和可持续发展提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ground source heat pump systems in Central Asia: A case study from Dushanbe, Tajikistan

Ground source heat pump systems in Central Asia: A case study from Dushanbe, Tajikistan
This study evaluated the applicability of a ground source heat pump GSHP system for heating and cooling applications in Dushanbe City, Tajikistan, by modeling an existing project in the city for the first time. Given the region's limited energy resources and heavy reliance on hydropower, the GSHP system presents a promising solution for sustainable heating and cooling demands in a country with a heating-dominated climate. The research employs numerical simulations validated with actual recorded data in the field, and providing a comprehensive analysis of both short-term and long-term performance calculating the heating and cooling Coefficient of Performance (COP) in the winter and summer, respectively. The model developed in FEFLOW software was validated perfectly using the TRT data including outlet temperature of the GHE and as well as ground temperature profiles recorded by an optical fiber sensor inserted into the GHE's return pipe from the beginning of the test until 48 h after test completion. The long-term simulation showed that the minimum ground temperature was only decrease about 1.3 °C during the 10-years of operation with the COP decrement of about 0.28, which was fairly acceptable performance. Results highlight the potential of GSHP systems to enhance energy efficiency and reliability in this country and as well as Central Asia. This pioneering study demonstrates the viability of GSHP technology in Tajikistan, offering valuable insights for future energy planning and sustainable development in the region.
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来源期刊
Geothermics
Geothermics 工程技术-地球科学综合
CiteScore
7.70
自引率
15.40%
发文量
237
审稿时长
4.5 months
期刊介绍: Geothermics is an international journal devoted to the research and development of geothermal energy. The International Board of Editors of Geothermics, which comprises specialists in the various aspects of geothermal resources, exploration and development, guarantees the balanced, comprehensive view of scientific and technological developments in this promising energy field. It promulgates the state of the art and science of geothermal energy, its exploration and exploitation through a regular exchange of information from all parts of the world. The journal publishes articles dealing with the theory, exploration techniques and all aspects of the utilization of geothermal resources. Geothermics serves as the scientific house, or exchange medium, through which the growing community of geothermal specialists can provide and receive information.
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