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March 8, 2026Geotechnics0 citationsOpen Access

Role of Nanofluids in Heat Extraction for Mid-Deep Geothermal Wells: Numerical Study on Thermofluidic Characteristics

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JMJinxing MaXZXiaogang ZhangJYJiabang Yu

Key Points

  • This research aims to evaluate how nanofluids enhance heat extraction in geothermal heat exchangers.
  • Numerical modeling using a 1D pipe flow and a 3D subsurface heat transfer model.
  • Validation of the model against field experimental data.
  • Comparison of heat extraction performance using Al2O3 and SiO2 water-based nanofluids.
  • Water-SiO2 nanofluid significantly enhances heat extraction compared to pure water.
  • Achieved outlet temperature with SiO2 exceeds pure water by approximately 0.2 °C after 2000 hours.
  • Lower inlet temperatures result in a substantial increase in heat extraction by 88.57%.
  • Thermal influence radius expands from less than 2 m at 300 hours to around 6 m at 1800 hours.

Abstract

Global climate change has intensified the need for clean and stable energy sources. Geothermal energy, with its consistent availability, is crucial for the transition to renewable energy systems. This study aims to numerically evaluate the enhancement of heat extraction in a mid-deep coaxial geothermal heat exchanger (GHE) when using water-based Al2O3 and SiO2 nanofluids. A comprehensive 1D pipe flow- and 3D subsurface heat transfer-coupled model was developed and validated against field experimental data. The results demonstrate that the nanofluids significantly enhanced heat extraction. The water–SiO2 nanofluid achieved the highest outlet temperature, exceeding pure water by approximately 0.2 °C after 2000 h. A lower inlet temperature of 5 °C increased heat extraction by 88.57% compared to 25 °C, despite a lower outlet temperature. The thermal influence radius expanded from <2 m at 300 h to ~6 m at 1800 h. This study provides quantitative insights and a validated framework for optimizing GHE performance through nanofluid selection and operational control.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/69ada9bbbc08abd80d5bcb77https://doi.org/10.3390/geotechnics6010026
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