Tang, J.; Chen, Y.; Liu, B.; Cao, J.; Wang, J.
Adaptive Lag Binning and Physics-Weighted Variograms: A LOOCV-Optimised Universal Kriging Framework with Trend Decomposition for High-Fidelity 3D Cryogenic Temperature Field Reconstruction. Processes 2025, 13, 3160.
https://doi.org/10.3390/pr13103160
AMA Style
Tang J, Chen Y, Liu B, Cao J, Wang J.
Adaptive Lag Binning and Physics-Weighted Variograms: A LOOCV-Optimised Universal Kriging Framework with Trend Decomposition for High-Fidelity 3D Cryogenic Temperature Field Reconstruction. Processes. 2025; 13(10):3160.
https://doi.org/10.3390/pr13103160
Chicago/Turabian Style
Tang, Jiecheng, Yisha Chen, Baolin Liu, Jie Cao, and Jianxin Wang.
2025. "Adaptive Lag Binning and Physics-Weighted Variograms: A LOOCV-Optimised Universal Kriging Framework with Trend Decomposition for High-Fidelity 3D Cryogenic Temperature Field Reconstruction" Processes 13, no. 10: 3160.
https://doi.org/10.3390/pr13103160
APA Style
Tang, J., Chen, Y., Liu, B., Cao, J., & Wang, J.
(2025). Adaptive Lag Binning and Physics-Weighted Variograms: A LOOCV-Optimised Universal Kriging Framework with Trend Decomposition for High-Fidelity 3D Cryogenic Temperature Field Reconstruction. Processes, 13(10), 3160.
https://doi.org/10.3390/pr13103160