Comparison and integration of simulation models for horizontal connection pipes in geothermal bore fields

IF 2.9 2区 地球科学 Q3 ENERGY & FUELS Geothermal Energy Pub Date : 2023-06-02 DOI:10.1186/s40517-023-00252-8
Stephan Düber, Raul Fuentes, Guillermo A. Narsilio
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Abstract

The heat transfer along horizontal connection pipes in geothermal bore fields can have significant effects and should not be neglected. As practical and design-related applications require simple and efficient models, we investigate suitability of different models for the first time within this context. Three ground and three pipe models of different complexity are studied. All model combinations are coupled with a fixed ground load boundary condition on one side and a borehole heat exchanger (BHE) model on the other side. Models are tested under a variety of realistic conditions to evaluate performance. The investigations show that all investigated pipe models are equally suitable for the application. For the ground models, the horizontal finite line source model and the numerical 2D model produce identical results for homogeneous ground properties. The soil resistance model neglects the temperature accumulation in the ground and thus leads to considerable deviations and should be avoided. Based on the findings, we propose a computationally efficient approach using a novel combination of established simple steady-state models for the BHE and connection pipes. In the selected example scenario, the consideration of a 30 m connection pipe attached to the BHE leads to an increase in the BHE load by 40% for the heating case and a reduction in the BHE load by 5% for the cooling case.

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地热井田水平连接管仿真模型的比较与集成
地热井田沿水平连接管的换热影响很大,不容忽视。由于实际和设计相关的应用需要简单有效的模型,我们首次在此背景下研究了不同模型的适用性。研究了不同复杂程度的三种地面和三种管道模型。所有模型组合的一侧是固定的地面负荷边界条件,另一侧是钻孔热交换器(BHE)模型。模型在各种现实条件下进行测试,以评估性能。研究表明,所研究的各种管道模型都同样适用于实际应用。对于均匀地物性,水平有限线源模型与二维数值模型的计算结果一致。土阻力模型忽略了地面温度积累,导致偏差较大,应避免。基于这些发现,我们提出了一种计算效率高的方法,该方法使用了BHE和连接管的简单稳态模型的新组合。在选定的示例场景中,考虑到连接到BHE的30米连接管导致供热情况下BHE负荷增加40%,冷却情况下BHE负荷减少5%。
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来源期刊
Geothermal Energy
Geothermal Energy Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
5.90
自引率
7.10%
发文量
25
审稿时长
8 weeks
期刊介绍: Geothermal Energy is a peer-reviewed fully open access journal published under the SpringerOpen brand. It focuses on fundamental and applied research needed to deploy technologies for developing and integrating geothermal energy as one key element in the future energy portfolio. Contributions include geological, geophysical, and geochemical studies; exploration of geothermal fields; reservoir characterization and modeling; development of productivity-enhancing methods; and approaches to achieve robust and economic plant operation. Geothermal Energy serves to examine the interaction of individual system components while taking the whole process into account, from the development of the reservoir to the economic provision of geothermal energy.
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