代表性论文 及著作 | 近年所发表的部分论文如下: 1)Yang
Liuming., Zheng yuanchong, Liu Shicheng, Wang Kai*. Influence of
wetting step surfaces on bubble drag reduction[J]. Physics of
Fluids, 2025, 37(11), 113315.(SCI) 2)Yang
Liuming., Yang Xinmeng, Yu Yang*, Liu Shicheng*. Influences of
wetting step surfaces on the maintenance of bubbles [J]. Physics
of Fluids, 2025, 37(4):043343.
(SCI) 3)Yang
Liuming*., Hu Chenhua, Zhang Zheyu, Wang Kai,Yu Yang*. A
consistent axisymmetric multiphase lattice Boltzmann flux solver
for flows with super-large density ratio [J]. Physics of Fluids,
2025, 37(5):053303.
(SCI) 4)Qin
Shenglei, Hou Guoxiang*, Yang Liuming*, Xu Shun, Gao Yuan, Chen
Yifan. Reconstructed small additional terms for the problem of
vapor–liquid phase change [J]. Physics of Fluids, 2025,
37:033320. (SCI) 5)杨留名,柳仕成,裴志勇,孔祥韶.润湿性表面气泡融合特性数值研究[J].中国舰船研究.
2025, 20(3): 26–36. 6)王帅,柳仕成,杨留名*,裴志勇,孔祥韶.液润表面动态润湿行为数值模拟研究[J].bet9九州
学报:交通科学与工程版.
(已录用) 7)Yang
Liuming*., Yang Xinmeng, Yang Yunfei, Hou Guoxiang, Wang Yan. An
improved axisymmetric interfacial lattice Boltzmann flux solver
for large-density-ratio multiphase flows [J]. Physics of Fluids,
2024, 36(2):023338.
(SCI) 8)Yang
Liuming, Li Xuhang, Yang Yunfei, Qin Shenglei, Hou Guoxiang, Qin
Jiangtao*. A consistent generalized model-based lattice Boltzmann
flux solver for incompressible porous flows [J]. Physics of
Fluids, 2024, 36(1):013626.
(SCI) 9)Qin
Shenglei, Hou Guoxiang*, Yang Liuming*, Gao Yuan, Guo Wenqiang,
Shi Jiahao. A novel one-step simplified lattice Boltzmann method
and its application to multiphase flows with large density
ratio[J]. Physics of Fluids, 2023, 35(5):053381. (SCI) 10)Qin
Shenglei, Hou Guoxiang*, Yang Liuming*, Gao Yuan, Liu Xu, Luo
Haoze. One-step simplified lattice Boltzmann method of thermal
flows under the Boussinesq approximation[J]. Physical Review E,
2023, 108(4): 045305. (SCI) 11)Qin
Shenglei, Yang Liuming*, Hou Guoxiang*, Gao Yuan & Guo
Wenqiang. A one-step simplified lattice Boltzmann method without
evolution of distribution functions. International Journal for
Numerical Methods in Fluids, 2022, 94(7): 1001-1025. (SCI) 12)Yang
Liuming, Liu Shicheng, Ao Lei, Yu Yang* & Hou Guoxiang*.
Development and assessment of the interface lattice Boltzmann
flux solvers for multiphase flows. International Journal of
Modern Physics C, 2022, 33(12): 1-31. (SCI) 13)Yu
Yang, Yang Liuming*, Gao Yuan & Hou Guoxiang*. Lattice
Boltzmann study of low-Reynolds-number flow past square cylinders
with varying slip distributions. Ocean Engineering, 2021, 236:
109425. (SCI) 14)Yu
Yang, Yang Liuming*, Gao Yuan & Hou Guoxiang*. Lattice
Boltzmann investigation of the influence of slip distributions on
the flow past a diamond cylinder at low-Reynolds-number. Physics
of Fluids, 2021, 33(7): 073611. (SCI) 15)Yang
Liuming, Shu Chang, Chen Zhen, Hou Guoxiang*, & Wang Yan. An
improved multiphase lattice Boltzmann flux solver for the
simulation of flow with large density ratio and complex
interface. Physics of Fluids, 2021, 33(3), 033306. (SCI) 16)Yang
Liuming, Shu Chang, Chen Zhen, Wang Yan & Hou Guoxiang*. A
simplified lattice Boltzmann flux solver for multiphase flows
with large density ratio. International Journal for Numerical
Methods in Fluids, 2021, 93(6):1895-1912. (SCI) 17)Yang
Liuming, Shu Chang, Yu Yang, Wang Yan & Hou Guoxiang*. A
mass-conserved fractional step axisymmetric lattice Boltzmann
flux solver for incompressible multiphase flows with large
density ratio. Physics of Fluids, 2020, 32(10), 103308. (SCI) 18)Yang
Liuming, Yu Yang, Yang Liming & Hou Guoxiang*. Analysis and
assessment of the no-slip and slip boundary conditions for the
discrete unified gas kinetic scheme. Physical Review E, 2020,
101(2), 023312. (SCI) 19)Yang
Liuming, Yu Yang, Pei Huijie, Gao Yuan & Hou Guoxiang*.
Lattice Boltzmann simulations of liquid flows in microchannel
with an improved slip boundary condition. Chemical Engineering
Science, 2019, 202, 105-117. (SCI) 20)Yang
Liuming, Yu Yang, Hou Guoxiang*, Wang Kai & Xiong Yeping.
Boundary conditions with adjustable slip length for the lattice
Boltzmann simulation of liquid flow. Computers & Fluids,
2018, 174, 200-212. (SCI) 21)Yang
Liuming, Hou Guoxiang*, Yu Yang, & Wang Kai. Lattice
Boltzmann Simulation on Drag Reduction by Adhesion-regulated
Superhydrophobic Surfaces. In The 28th International Ocean and
Polar Engineering Conference. International Society of Offshore
and Polar Engineers,2018,155-162. (EI) 22)Yang
Liuming, Gao Yuan, Zhao Shuai, Yu Yang, & Hou Guoxiang*.
Lattice Boltzmann study on drag reduction of a bluff body by slip
boundary. Journal of Physics: Conference Series,
2019,1300(01):012036. (EI) 23)Wang
Kai, Yang Liuming, Yu Yang & Hou Guoxiang*. Influence of the
slip boundary on square cylinders with lattice Boltzmann method.
Physics of Fluids,2023, 35(12): 122020.(SCI) 24)Gao
Yuan, Yang Liuming, Yu Yang, Hou Guoxiang*, & Hou Zhongbao.
Improved simplified and highly stable lattice Boltzmann methods
for incompressible flows. International Journal of Modern Physics
C, 2021, 32(06): 1-26. (SCI) 25)Gao
Yuan, Yang Liuming, Yu Yang, Hou Guoxiang*, & Hou Zhongbao.
Consistent Forcing Scheme in the Simplified Lattice Boltzmann
Method for Incompressible Flows. Communications in Computational
Physics, 2021, 30(5): 1427-1452. (SCI) 26)Gao
Yuan, Yu Yang, Yang Liuming, , Qin Shenglei& Hou Guoxiang*.
Development of a coupled simplified lattice Boltzmann method for
thermal flows. Computers & Fluids, 2021: 105042. (SCI) 27)Gao
Yuan, Yu Yang, Yang Liuming, Hou Guoxiang*, & Shu Chang.
Numerical Study of Flow Characteristics Around Underwater Vehicle
Model at High Reynolds Number//The 29th International Ocean and
Polar Engineering Conference. OnePetro, 2019. (EI) 28)Wang
Kai, Yang Liuming, Yu Yang & Hou Guoxiang*. Influence of slip
boundary on the hydrofoil with a curved slip boundary condition
for the lattice Boltzmann method. Physics of Fluids, 2018,
30(12): 123601. (SCI) 29)Wang
Kai, Yu Yang, Yang Liuming & Hou Guoxiang*. Lattice
Boltzmann based internal wave-maker//The 27th International Ocean
and Polar Engineering Conference. OnePetro, 2017. (EI)
部分已授权专利: (1)用于船舶气层减阻的气层分布状态监测装置 (2)孔缝联合气泡减阻装置 (3)基于智能温控表面的舵装置 (4)表面减阻效果测试装置 (5)船用加筋板复杂极端载荷加载装置 (6)大型邮轮烟囱极限风压载荷加载装置 |