Kuang, R.; Du, B.; Lund, P.D.; Wang, J.; Liu, Y.
Machine Learning Improves Performance Prediction and Interpretation of Efficiency Influencing Factors of a Novel Basalt-Fiber-Bundle Thermal Flow-Reversal Reactor for Methane Recovery. Energies 2025, 18, 5730.
https://doi.org/10.3390/en18215730
AMA Style
Kuang R, Du B, Lund PD, Wang J, Liu Y.
Machine Learning Improves Performance Prediction and Interpretation of Efficiency Influencing Factors of a Novel Basalt-Fiber-Bundle Thermal Flow-Reversal Reactor for Methane Recovery. Energies. 2025; 18(21):5730.
https://doi.org/10.3390/en18215730
Chicago/Turabian Style
Kuang, Rao, Bin Du, Peter D. Lund, Jun Wang, and Yanying Liu.
2025. "Machine Learning Improves Performance Prediction and Interpretation of Efficiency Influencing Factors of a Novel Basalt-Fiber-Bundle Thermal Flow-Reversal Reactor for Methane Recovery" Energies 18, no. 21: 5730.
https://doi.org/10.3390/en18215730
APA Style
Kuang, R., Du, B., Lund, P. D., Wang, J., & Liu, Y.
(2025). Machine Learning Improves Performance Prediction and Interpretation of Efficiency Influencing Factors of a Novel Basalt-Fiber-Bundle Thermal Flow-Reversal Reactor for Methane Recovery. Energies, 18(21), 5730.
https://doi.org/10.3390/en18215730