杨丹 副教授

一、讲授课程:船舶推进,船舶与海洋工程专业英语

二、个人邮箱 dan_yang@hust.edu.cn,欢迎对流体力学与水动力学有兴趣的同学报考研究生!

三、科研经历:

主持项目:

1.国家自然科学基金项目:基于浸入边界法的侧向加质流与表面涡脱落的流动稳定性研究(项目负责人)

2.国家自然科学基金项目:非均匀高分子聚合物用于水中航行器外部流动减阻特性研究(第一参与人)

3.挪威研究理事会项目:船体相互作用的非定常流体力学特性研究

4.国家自然科学基金项目:旋转飞行器章动摇摆与内流场的耦合作用

5.国防预研项目:高级固体火箭发动机内流场的数值模拟仿真

6.法国道达尔石油集团 Martin Linge海洋采油平台的安全风险评估

7.日本CHIYODA CORPORATION浮式液化天然气船(FLNG)火灾与爆炸的风险研究

8.英国ROWAN公司Gorilla海洋平台火灾安全风险分析

发表论文

1.Xiong,  Y. L. and Yang, D*., “Influence of slip on the three-dimensional  instability of flow past an elongated superhydrophobic bluff body”,  submitted to Journal of Fluid Mechanics.

2.Xiong,  Y. L., Bruneau, C. H., Yang, D*., “Numerical study of the flow of  viscoelastic fluid around a rigid body”, accepted by Applied  Mathematical Modelling.

3.Yang,  D., Xiong, Y. L. and Guo, X. F., “Drag reduction of a rapid vehicle in  supercavitating flow”, accepted by International Journal of Naval  Architecture and Ocean Engineering.

4.Yang,  D., B. Pettersen, and Xiong, Y. L., “Interactions between two flat  plates at different positions in a current”, Ocean Engineering, Vol.  119, 1 June 2016, Pages 75–85.

5.张卫平,杨丹*,熊永亮, 某固体火箭发动机过载环境下内流场研究, 固体火箭技术,2016.

6.贾文超,陈美霞,杨丹. 二维平板绕流锁定发生机理研究. 舰船科学技术. 2016

7.陈美霞,贾文超,杨丹. 基于单向求解双向流固耦合的悬臂平板绕流涡激振动特性对比研究. 船舶力学. 2016

8.Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Analysis of  vortex splitting characteristics in the wake of an inclined flat plate  using Hilbert-Huang Transform", Acta Mechanica, (2015) 226: 1085.  doi:10.1007/s00707-014-1222-1.

9.Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Floquet  stability analysis of the wake of an inclined flat plate", Physics of  Fluids, Vol. 25, 094103, 2013. (流体力学top期刊)

10.Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "On oblique  and parallel shedding behind an inclined plate", Physics of Fluids, Vol.  25, 054101, 2013.

11.Yang,  D., V. D. Narasimhamurthy, B. Pettersen, H. I. Andersson,  "Three-dimensional wake transition behind an inclined flat plate",  Physics of Fluids, Vol. 24, 094107, 2012.

12.Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Vortex  shedding in flow past an inclined flat plate at high incidence", Physics  of Fluids, Vol. 24, 084103, 2012.

13.Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D.,  “Three-dimensional transition to turbulence in the wake of an inclined  flat plate”, Journal of Physics: Conference Series, 318, (2011) 032044.

14.Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D.,  “Vortex Shedding in Flow Past an Inclined Flat Plate at High Incidence”,  Seventh International Symposium on Turbulence and Shear Flow Phenomena,  Ottawa, Canada, 2011.

15.Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D. “Direct  numerical simulation of flow past a rectangular flat plate at  incidence”, Proc. ECCOMAS CFD 2010, Lisbon, Portugal, 2010.

16.郜冶, 刘平安, 杨丹. 旋转飞行器固体火箭发动机内涡核流动的数值分析[J]. 推进技术. 2011, 32(1): 86-90

17.郜冶, 刘平安, 杨丹. 旋转固体火箭发动机飞行器章动不稳定性机理述评 [J]. 固体火箭技术. 2011, 34(1): 14-47

18.郜冶, 刘平安, 杨丹. 旋转飞行器固体火箭发动机非稳态气流作用分析 [J]. 宇航学报. 2010, 31(6): 1637-1645

19.杨丹, 郜冶, 熊永亮. 旋转固体火箭发动机随质量变化的姿态运动分析[J]. 推进技术. 2008, 29(1): 8-12

20.郜冶, 杨丹*, 熊永亮. 旋转飞行器固体火箭发动机引起的章动不稳定性分析[J]. 宇航学报. 2008, 29(1): 270-275

21.熊永亮, 郜冶 , 杨丹. 不同攻角运动的水下导弹表面空泡流场数值研究[J]. 哈尔滨工程大学学报. 2007

22.熊永亮, 杨丹, 郜冶, 王革. 固体火箭发动机燃烧室内声波振荡的数值研究[J]. 推进技术. 2006, 27(6): 484-487

23.杨丹, 郜冶, 杨春英. 固体火箭发动机两相流数值模拟方法的比较[J]. 弹箭与制导学报. 2005, 25(8): 141-144

24.Yang  Dan, Xiong Yongliang, Gao Ye, Li Shusheng. What Can CFD Do on Disaster  Reduction. Proceedings of the2nd International ISCRAM CHINA Workshop,  Harbin, China. 2007, 8: 507-511P (UT ISTP: 000250334100095)

25.Yang  Dan, Gao Ye, Xiong Yongliang. Dynamic Analysis of Rotational Solid  Rocket Motors. Proceedings of ICMEM2007, International Conference on  Mechanical Engineering and Mechanics, Wuxi, China. 2007, 11, 5-7:  984-988P (UT ISTP: 000254108200202)

26.杨丹, 熊永亮, 郜冶. 固体火箭发动机内流场的非稳态数值模拟. 中国宇航学会2005年固体火箭推进第22届年会论文集(发动机分册). 中国四川, 成都. 2005, 10: 98-100

27.熊永亮, 杨丹, 郜冶. 固体火箭发动机压力填充引起的声波振荡的数值研究. 中国宇航学会2005年固体火箭推进第22届年会论文集(发动机分册). 中国四川, 成都. 2005, 10: 101-104

28.杨丹, 郜冶. 旋转固体火箭发动机章动摇摆运动的动态网格生成. 中国宇航学会2006年固体火箭推进第23届年会论文集(发动机分册). 中国内蒙古, 呼和浩特. 2006, 8: 51-57

29.杨丹, 郜冶, 熊永亮. 固体火箭发动机旋转的稳定性分析. 中国宇航学会2007年固体火箭推进专业委员会第24届年会论文集(发动机分册). 中国山东, 烟台. 2007, 8: 63-70

ˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉˉ

NAME: Dan Yang

Associate Professor

Phone: +86-027-87543258

Email: dan_yang@hust.edu.cn

Academic Areas:  Naval Architecture and Ocean Engineering, Computational fluid dynamics  (CFD), Fluid mechanics, Hydrodynamics, Turbulent flow, Multiphase flow,  Fluid structure interaction (FSI), Turbulent drag reduction

Research Interests: Turbulence, Microfluidics, Lagrangian coherent structure

Academic Degrees

Ph.D.  Department of Marine Technology, Norwegian University of Science and  Technology (Trondheim, Norway), 2009.3-2013.2. Research field: Direct  numerical simulation of bluff body wakes, wake stability analysis.

Ph.D.  College of Aerospace and Civil Engineering, Harbin Engineering  University (Harbin, China), 2005.9-2009.6.Research field: Multiphase  flow, Slag sloshing, Flight mechanics.

M.Sc.  College of Aerospace and Civil Engineering, Harbin Engineering  University (Harbin, China), 2003.9-2006.3.Research field: Numerical  comparison of different multiphase flow methods

B.Sc.  College of Aerospace and Civil Engineering, Harbin Engineering  University (Harbin, China), 1999.9-2003.6.Research field: HAVC design

Professional Experience

Associate  Professor (2015.1-present): School of Naval Architecture and Ocean  Engineering, Huazhong University of Science and Technology (Wuhan,  China)

Senior Engineer (2013.2-2014.12): DNVGL (Oslo, Norway)

Research  fellow (2009.3-2013.1): Department of Marine Technology, Norwegian  University of Science and Technology (Trondheim, Norway)

Selected Publications

1. Xiong,  Y. L. and Yang, D*, “Influence of slip on the three-dimensional  instability of flow past an elongated superhydrophobic bluff body”,  Journal of Fluid Mechanics (2017), vol. 814, pp. 69-94.

2. Xiong,  Y. L., Bruneau, C. H., Yang, D*, “Numerical study of the flow of  viscoelastic fluid around a rigid body”, Applied Mathematical Modelling,  42 (2017) 188–208.

3. Xinliang  Tian, Longfei Xiao, Xiangdong Zhang, Jianmin Yang, Longbin Tao and Dan  Yang, Flow around an oscillating circular disk at low to moderate  Reynolds numbers, Journal of Fluid Mechanics (2017), vol. 812, pp.  1119-1145.

4. Dan  YANG, Yongliang XIONG*, Qian REN, and Xianyong WANG, “Nutation  instability of spinning solid rocket motor spacecraft”, Chinese Journal  of Aeronautics, 2017, Vol. 30(4), pp: 1363-1372.

5. Yang,  D., Xiong, Y. L. and Guo, X. F., “Drag reduction of a rapid vehicle in  supercavitating flow”, International Journal of Naval Architecture and  Ocean Engineering, 9 (2017) 35-44.

6. Chengyu  Sun, Dan Yang, Yongliang Xiong, “Numerical simulation of flow and  hydrodynamic noise of NACA0012 foil using Large Eddy Simulation”, 10th  International Workshop on Ship and Marine Hydrodynamics Keelung, Taiwan,  November 5-8, 2017

7. Xianquan  Lv,, Dan Yang, Yongliang Xiong, “Numerical study of cavitating flow  around a hydrofoil NACA0015 with superhydrophobic surfaces”, 10th  International Workshop on Ship and Marine Hydrodynamics Keelung, Taiwan,  November 5-8, 2017

8. Yang,  D., B. Pettersen, and Xiong, Y. L., “Interactions between two flat  plates at different positions in a current”, Ocean Engineering, Vol.  119, 1 June 2016, Pages 75–85.

9. Xianquan, LvDan, Yang  Yongliang, Xiong. Numerical simulation of flow past a circular cylinder  with different confinements. The second Conference of Global Chinese  Scholars on Hydrodynamics (CCSH’ 2016), Wuxi, Jiangsu, China, November  20-23, 2016

10. Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Analysis of  vortex splitting characteristics in the wake of an inclined flat plate  using Hilbert-Huang Transform", Acta Mechanica, (2015) 226: 1085.  doi:10.1007/s00707-014-1222-1.

11. Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Floquet  stability analysis of the wake of an inclined flat plate", Physics of  Fluids, Vol. 25, 094103, 2013.

12. Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "On oblique  and parallel shedding behind an inclined plate", Physics of Fluids, Vol.  25, 054101, 2013.

13. Yang,  D., V. D. Narasimhamurthy, B. Pettersen, H. I. Andersson,  "Three-dimensional wake transition behind an inclined flat plate",  Physics of Fluids, Vol. 24, 094107, 2012.

14. Yang,  D., B. Pettersen, H. I. Andersson, V. D. Narasimhamurthy, "Vortex  shedding in flow past an inclined flat plate at high incidence", Physics  of Fluids, Vol. 24, 084103, 2012.

15. Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D.,  “Three-dimensional transition to turbulence in the wake of an inclined  flat plate”, Journal of Physics: Conference Series, 318, (2011) 032044.

16. Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D.,  “Vortex Shedding in Flow Past an Inclined Flat Plate at High Incidence”,  Seventh International Symposium on Turbulence and Shear Flow Phenomena,  Ottawa, Canada, 2011.

17. Yang,  D., Pettersen, B., Andersson, H. I., and Narasimhamurthy, V. D. “Direct  numerical simulation of flow past a rectangular flat plate at  incidence”, Proc. ECCOMAS CFD 2010, Lisbon, Portugal, 2010.

18. Yang  Dan, Xiong Yongliang, Gao Ye, Li Shusheng. What Can CFD Do on Disaster  Reduction. Proceedings of the2nd International ISCRAM CHINA Workshop,  Harbin, China. 2007, 8: 507-511P

19. Yang  Dan, Gao Ye, Xiong Yongliang. Dynamic Analysis of Rotational Solid  Rocket Motors. Proceedings of ICMEM2007, International Conference on  Mechanical Engineering and Mechanics, Wuxi, China. 2007, 11, 5-7:  984-988P

Courses Taught

Ship Propulsion

English in ship and ocean engineering

Project

Research on stability of liquid-gas interface, drag reduction and characteristic of fluid flow of superhydrophobic surfaces

Flow stability analysis of wall mass injection and surface vortex shedding based on Level-set method

A Study on the Nutation Instability of Spinning Solid Rocket Motor Spacecraft





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