Lu, B.; Zhang, Y.; Reeves, D.M.; Sun, H.; Zheng, C.
Application of Tempered-Stable Time Fractional-Derivative Model to Upscale Subdiffusion for Pollutant Transport in Field-Scale Discrete Fracture Networks. Mathematics 2018, 6, 5.
https://doi.org/10.3390/math6010005
AMA Style
Lu B, Zhang Y, Reeves DM, Sun H, Zheng C.
Application of Tempered-Stable Time Fractional-Derivative Model to Upscale Subdiffusion for Pollutant Transport in Field-Scale Discrete Fracture Networks. Mathematics. 2018; 6(1):5.
https://doi.org/10.3390/math6010005
Chicago/Turabian Style
Lu, Bingqing, Yong Zhang, Donald M. Reeves, HongGuang Sun, and Chunmiao Zheng.
2018. "Application of Tempered-Stable Time Fractional-Derivative Model to Upscale Subdiffusion for Pollutant Transport in Field-Scale Discrete Fracture Networks" Mathematics 6, no. 1: 5.
https://doi.org/10.3390/math6010005
APA Style
Lu, B., Zhang, Y., Reeves, D. M., Sun, H., & Zheng, C.
(2018). Application of Tempered-Stable Time Fractional-Derivative Model to Upscale Subdiffusion for Pollutant Transport in Field-Scale Discrete Fracture Networks. Mathematics, 6(1), 5.
https://doi.org/10.3390/math6010005