Hao Wang, Bin Wang*, Neng-Zhi Yao, Zhengyan Xiao, Chen-Long Wu, Xuesheng Wang , Xingsheng Wang*. Metamaterial-Free, Zero-Drag, Spherical Hydrodynamic Cloaks enabled by Machine Learning. Physics of Fluids 37 (2025**)** 013633 ****** [亮点论文]
该研究还获得了美国物理联合会出版社(AIP publishing)科学之光的专访报道(点击蓝色字体可阅读)
Nengzhi Yao, Bin Wang*, Hao Wang, Chen-Long Wu, Tien-Mo Shih, Xuesheng Wang*. On-demand zero-drag hydrodynamic cloaks resolve D'Alembert paradox in viscous potential flows. Microsystems & Nanoengineering (2024) 10:188 [一区, Top期刊]
Nengzhi Yao, Bin Wang, Hao Wang, Chen-Long Wu, Xuesheng Wang*.Hydrodynamic cloaks with isotropic and homogeneous viscosity for multi-object in collaborative operations. Physics of Fluids 36 (2024) 103634. [亮点论文]
该研究还获得了美国物理联合会出版社(AIP publishing)科学之光的专访报道(点击蓝色字体可阅读)
Nengzhi Yao, Bin Wang, Hao Wang, Chen-Long Wu, Xuesheng Wang*.Hydrodynamic dipole-driven theory for active flow control in heterogeneous porous media. Physics of Fluids 36 (2024) 094126 [二区]
Nengzhi Yao, Hao Wang, Chen-Long Wu, Bin Wang, Xuesheng Wang*.Convective Thermal Rot-amplifiers with Venturi-Effect and Nonreciprocity Characteristics: Rotating and Amplifying Thermal Fluid Flows Simultaneously. International Communications in Heat and Mass Transfer159 (2024) 108063. [二区]
Chen-Long Wu, Bin Wang, Neng-Zhi Yao, Hao Wang, Xuesheng Wang*. Meta-hydrodynamics for freely manipulating fluid flows. Physics of Fluids 36(6) (2024) 063613. **[二区]**该研究提出提出超构流体力学理论用于设计不同的超构流动器件以实现自由的流动控制。
Chunzhen Fan*, Chen-Long Wu, Yuanyuan Wang, Bin Wang∗,Jun Wang∗, Thermal metamaterials: From static to dynamic heat manipulation. Physics Reports 1077 (2024) 1–111. [一区Top期刊, IF=30]
Chen-Long Wu, Bin Wang*, Hao Wang, Neng-Zhi Yao, Xuesheng Wang*. Optimal design of maximally amplified thermal concentrators with homogeneous and isotropic materials. International Communications in Heat and Mass Transfer 152 (2024) 107326. [SCI]
Hao Wang, Nengzhi Yao, Bin Wang*, Xuesheng Wang*. A Transient Transformation Theory for the Design of Convective Thermal Metamaterials: Cloaks, Concentrators, and Rotators. International Journal of Heat and Mass Transfer 221 (2024) 125088. [SCI]
Bin Wang*, JipingHuang*. Hydrodynamic metamaterials for flow manipulation: Functions and prospects. Chinese Physics B 31 (2022) 098101. [30周年庆特邀综述][SCI]
姚能智,王浩,王斌*,王学生*. 基于变换流体动力学的文丘里效应旋聚器的设计与非互易特性研究, 物理学报 71 (2022) 104701.[SCI]
王浩,姚能智,王斌*,王学生*. 流动隐身衣的均匀化设计与减阻特性, 物理学报 71 (2022) 134703.[SCI]
Nengzhi Yao, Hao Wang, Bin Wang*, Wang Xuesheng*, Jiping Huang*, Convective thermal cloaks with homogeneous and isotropic parameters and drag-free characteristics for viscous potential flows. iScience 25 (2022) 105461. [SCI]
Wang Hao,Yao Neng-Zhi,Wang Bin*,Shih Tien-Mo,Wang Xuesheng*. Homogeneous Venturi-effect concentrators for creeping flows: Magnifying flow velocities and heat fluxes simultaneously[J]. Applied Thermal Engineering, 2022,206. [SCI]
Yuan Yuyang,Cao Jiaming,Wang Xuesheng*,Zhang Zhao,Liu Yanbin. Economic-effectiveness analysis of micro-fins helically coiled tube heat exchanger and optimization based on multi-objective differential evolution algorithm[J]. Applied Thermal Engineering,2022,201. [SCI]
Ying Hong, Xuesheng Wang*, Yan Wang, Zhao Zhang and Yong Han. Evaluation of the residual stress in stainless steel 304L hydraulically expanded joints. Proc IMechE Part E: J Process Mechanical Engineering, 2021, Vol. 235(2) 428–439. [SCI]
Yuan Yuyang,Wang Xuesheng*,Meng Xiangyu,Zhang Zhao,Cao Jiaming. A strategy for helical coils multi-objective optimization using differential evolution algorithm based on entropy generation theory[J]. International Journal of Thermal Sciences,2021,164. [SCI]
Cao Jiaming,Wang Xuesheng*,Yuan Yuyang,Zhang Zhao,Liu Yanbin. Multi-objective optimization of micro-fin helical coil tubes based on the prediction of artificial neural networks and entropy generation theory[J]. Case Studies in Thermal Engineering,2021,28. [SCI]
Yanbin Liu, Xuesheng Wang*,Qiming Men,Xiangyu Meng. Experimental study of heat transfer outside C-shaped tube in water tank[J]. Annals of Nuclear Energy,2020,135. [SCI]
Ying Hong,Xuesheng Wang*,Yan Wang,Zhao Zhang. Study on reducing the risk of stress corrosion cracking of austenitic stainless steel hydraulically expanded joints[J]. Engineering Failure Analysis,2020,113.