Xu, L.; Zhou, X.; Li, J.; Hu, Y.; Qi, H.; Wen, W.; Du, K.; Ma, Y.; Yu, Y.
Numerical Simulations of Molten Breakup Behaviors of a de Laval-Type Nozzle, and the Effects of Atomization Parameters on Particle Size Distribution. Processes 2020, 8, 1027.
https://doi.org/10.3390/pr8091027
AMA Style
Xu L, Zhou X, Li J, Hu Y, Qi H, Wen W, Du K, Ma Y, Yu Y.
Numerical Simulations of Molten Breakup Behaviors of a de Laval-Type Nozzle, and the Effects of Atomization Parameters on Particle Size Distribution. Processes. 2020; 8(9):1027.
https://doi.org/10.3390/pr8091027
Chicago/Turabian Style
Xu, Lianghui, Xianglin Zhou, Jinghao Li, Yunfei Hu, Hang Qi, Wei Wen, Kaiping Du, Yao Ma, and Yueguang Yu.
2020. "Numerical Simulations of Molten Breakup Behaviors of a de Laval-Type Nozzle, and the Effects of Atomization Parameters on Particle Size Distribution" Processes 8, no. 9: 1027.
https://doi.org/10.3390/pr8091027
APA Style
Xu, L., Zhou, X., Li, J., Hu, Y., Qi, H., Wen, W., Du, K., Ma, Y., & Yu, Y.
(2020). Numerical Simulations of Molten Breakup Behaviors of a de Laval-Type Nozzle, and the Effects of Atomization Parameters on Particle Size Distribution. Processes, 8(9), 1027.
https://doi.org/10.3390/pr8091027