Hu, T.; Hou, G.; Bu, S.; Zhu, Z.; Wang, Y.; Hu, Z.; Li, Z.
A Novel Approach for Predicting the Height of Water-Conducting Fracture Zone under the High Overburden Caving Strength Based on Optimized Processes. Processes 2020, 8, 950.
https://doi.org/10.3390/pr8080950
AMA Style
Hu T, Hou G, Bu S, Zhu Z, Wang Y, Hu Z, Li Z.
A Novel Approach for Predicting the Height of Water-Conducting Fracture Zone under the High Overburden Caving Strength Based on Optimized Processes. Processes. 2020; 8(8):950.
https://doi.org/10.3390/pr8080950
Chicago/Turabian Style
Hu, Tao, Gongyu Hou, Su Bu, Zhen Zhu, Yan Wang, Ziyi Hu, and Zixiang Li.
2020. "A Novel Approach for Predicting the Height of Water-Conducting Fracture Zone under the High Overburden Caving Strength Based on Optimized Processes" Processes 8, no. 8: 950.
https://doi.org/10.3390/pr8080950
APA Style
Hu, T., Hou, G., Bu, S., Zhu, Z., Wang, Y., Hu, Z., & Li, Z.
(2020). A Novel Approach for Predicting the Height of Water-Conducting Fracture Zone under the High Overburden Caving Strength Based on Optimized Processes. Processes, 8(8), 950.
https://doi.org/10.3390/pr8080950