Evaluating tidal impact on ground source heat exchanger performance under fluctuating groundwater levels

IF 3.5 2区 工程技术 Q3 ENERGY & FUELS
Hikari Fujii , Saeid Mohammadzadeh Bina , Nanami Sato , Takeshi Ishihara
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Abstract

Coastal regions undergo dynamic changes due to tidal forces, posing distinct challenges for groundwater management and utilization of ground source heat pump (GSHP) systems. This study examines the impact of tidal fluctuations on groundwater levels and the performance of ground heat exchangers (GHEs), specifically focusing on the suitability of horizontal directional drilling (HDD) technology in high-tidal zones. Itoman City in Okinawa Prefecture, Southern Japan, serves as an ideal location for this study due to its complex coastal hydrogeological conditions and increasing interest in renewable energy solutions. Employing a comprehensive approach involving field experiments, FEFLOW software simulations, and model validation, we aim to elucidate the intricate relationship between tidal dynamics, groundwater behavior, and GHE performance. Furthermore, our investigation assesses the effectiveness of HDD-GHEs installed in highly tidal-affected zones to determine the optimal installation depth for this type of GHE in coastal regions. According to our research, the layer at a depth of 30 m is most affected by tidal influence and fluctuations in groundwater levels in coastal regions. This layer is the most suitable for installing horizontal HDD-GHEs, with an average heat exchange rate of about 89 W/m. This rate is approximately four and two times higher than the depths above and below this layer, respectively, due to groundwater saturation and flow in the formation. Furthermore, we noticed that the heat exchange rate increases from the top to the bottom of this layer, but the extent of this increase diminishes as the depth increases. This is because deeper depths are less affected by tidal fluctuations in groundwater levels.

Abstract Image

评估潮汐对地下水位波动下地源热泵性能的影响
沿海地区因潮汐力而发生动态变化,给地下水管理和地源热泵 (GSHP) 系统的利用带来了独特的挑战。本研究探讨了潮汐波动对地下水位和地热交换器 (GHE) 性能的影响,特别关注了高潮汐区水平定向钻井 (HDD) 技术的适用性。由于日本南部冲绳县糸满市的沿海水文地质条件复杂,而且人们对可再生能源解决方案的兴趣与日俱增,因此该市成为这项研究的理想地点。我们采用包括现场实验、FEFLOW 软件模拟和模型验证在内的综合方法,旨在阐明潮汐动力学、地下水行为和 GHE 性能之间错综复杂的关系。此外,我们还评估了在受潮汐影响较大的区域安装 HDD-GHE 的效果,以确定这种 GHE 在沿海地区的最佳安装深度。根据我们的研究,在沿海地区,30 米深处的地层受潮汐和地下水位波动的影响最大。该层最适合安装水平 HDD-GHE,其平均热交换率约为 89 W/m。由于地层中地下水的饱和和流动,该热交换率分别约为该层上、下深度的四倍和两倍。此外,我们还注意到,热交换率从该层的顶部到底部都在增加,但增加的幅度随着深度的增加而减小。这是因为较深的地层受地下水位潮汐波动的影响较小。
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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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