ld体育官网

  • 学院首页
  • ld乐动体育官方网站
    • 学院介绍
    • 历史沿革
    • 学院领导
    • 历任领导
    • 学院机关
    • 组织机构
  • 党群工作
    • 党建动态
    • 理论学习
    • 党风廉政
    • 工会教代会
  • 师资队伍
    • 师资名录
    • 杰出人才
    • 教学名师
    • 创新团队
  • 人才培养
    • 本科生教学
    • 研究生培养
    • 科技创新
    • 奖学金评定
    • 培养基地
    • 教学平台
  • 科学研究
    • 科研概况
    • 研究方向
    • 科研合作
    • 科研成果
    • 科研政策
    • 科研平台
  • 国际交流
    • 教师国际化
    • 学生国际化
    • 国际化平台
  • 人事服务
    • 人才招聘
  • 学工天地
    • 学工队伍
    • 学工动态
    • 规章制度
    • 相关下载
  • 校友工作
    • 校友捐赠
    • 校友风采
    • 校友名录
    • 校友活动
    • 联系我们
学校主页    |    English
学校主页 English         旧版网站
  • ld乐动体育官方网站
    学院介绍
    历史沿革
    学院领导
    历任领导
    学院机关
    组织机构
  • 党群工作
    党建动态
    理论学习
    党风廉政
    工会教代会
  • 师资队伍
    师资名录
    杰出人才
    教学名师
    创新团队
  • 人才培养
    本科生教学
    研究生培养
    科技创新
    奖学金评定
    培养基地
    教学平台
  • 科学研究
    科研概况
    研究方向
    科研合作
    科研成果
    科研政策
    科研平台
  • 国际交流
    教师国际化
    学生国际化
    国际化平台
  • 人事服务
    人才招聘
  • 学工天地
    学工队伍
    学工动态
    规章制度
    相关下载
  • 校友工作
    校友捐赠
    校友风采
    校友名录
    校友活动
    联系我们
力学系
  • 正高级职称(按拼音排序)
  • 副高级职称(按拼音排序)
  • 中级及其他教工人员(按拼音排序)
您现在的位置: 首页» 2020改版» 师资队伍» 师资名录» 力学系» 副高级职称(按拼音排序)

副高级职称(按拼音排序)

赵欣

所在学科:力学/流体力学

联系电话:

通讯地址:北京市海淀区中关村南大街5号北京理工大学宇航楼425室

职 称:长聘副教授/博士生导师

邮 箱:6120160101@bit.edu.cn

邮 编:100081

教育经历
2011年9月-2014年12月,在美国克拉克森大学获得土木与环境工程专业博士学位
2004年9月-2007年7月,在中国科学院力学研究所获得流体力学专业硕士学位
2000年9月-2004年7月,在清华大学获得工程力学专业学士学位
工作经历
2022年10月至今,北京理工大学,长聘副教授
2016年8月-2022年10月,北京理工大学,预聘助理教授
2014年12月-2016年6月,美国克拉克森大学,博士后研究员
主要研究领域
1、水动力学
2、气液两相流
3、流动噪声
4、海冰动力学
5、湍流
获奖情况
1、第十一届全国流体力学学术会议 优秀青年论文奖(2篇)
2、第十届全国流体力学学术会议 优秀青年论文奖
社会兼职
1、中国力学学会会员
2、美国物理学会会员(APS)
3、美国地球物理学会会员(AGU)
4、SCI期刊审稿人:Acta Mechanica Sinica、Applied Ocean Research、Journal of Atmospheric and Oceanic Technology、Journal of Fluids and Structures、Ocean Engineering、Ocean Modelling、Physics of Fluids、Physical Review Fluids、Ships and Offshore Structures、Theoretical and Applied Mechanics Letters、Ultrasonics Sonochemistry
近年来主要发表论文

1. Q. Dong, X. Zhao*, B. Huang, and G. Wang, “Low-frequency acoustic-gravity wave emission generated by the vortex caused by a moving submerged cylinder”, Applied Ocean Research, 2024.

2. H. Zhang, Y. Hu, B. Huang, and X. Zhao*, “Verification and validation of a numerical wave tank with momentum source wave generation”, Acta Mechanica Sinica, submitted.

3. X. Zhao* and K. Yin, “A sub-grid scale model for Burgers turbulence based on the artificial neural network method”, Theoretical and Applied Mechanics Letters, 2024.

4. J. Huang and X. Zhao*, “Numerical Investigation of particles dispersion and collisions in the liquid jet flow”, AIP Advances, 2024.

5. H. Jiang and X. Zhao*, “Numerical simulation of sound attenuation in an acoustically lined duct in high-temperature air flows”, AIP Advances, 2024

6. Q. Dong, X. Zhao*, B. Huang, and G. Wang, “Acoustic-gravity waves induced by vortices horizontally moving underwater”, Acta Mechanica Sinica, 2024.

7. H. Zhang, Q. Zhang, and X. Zhao*, “Numerical investigation of skipping stones using a hybrid volume of fluids and boundary data immersion method”, Physics of Fluids, 2024.

8. H. Zhang, B. Huang, and X. Zhao*, “Numerical investigation of wave-cylinder interaction based on a momentum source wave generation method”, Ocean Engineering, 2023.

9. B. Tian, J. Chen, X. Zhao, M. Zhang, and B. Huang*, “Numerical analysis of interaction between turbulent structures and transient sheet/cloud cavitation”, Physics of Fluids, 2022.

10. Y. Lv, H. Wei, T. Liu*, X. Zhao, Y. Liu, B. Huang, and G. Wang, “Numerical investigation of the round jet in cross flow at high velocity ratios with special emphasis on the evolution of vortex structures”, Physics of Fluids, 2022.

11. Q. Zhang, H. Ren, X. Zhao* “Numerical investigation on water-skipping of spheres with and without spin”, Ocean Engineering, 2022.

12. J. Chen, B. Huang, X. Zhao*, J. Huang “Numerical investigation of cavitation-vortex structures around a sphere with boundary data immersion method”, Ocean Engineering, 2022.

13. X. Zhao* “A three-dimensional robust volume of fluid solver based on the adaptive mesh refinement”, Theoretical and Applied Mechanics Letters, 2021.

14. Y. Qu, Q. Wu*, X. Zhao, B. Huang, X. Fu, G. Wang “Numerical investigation of flow structures around the DARPA SUBOFF model”, Ocean Engineering, 2021.

15. H. Ren and X. Zhao* “Numerical simulation for ice breaking and water entry of sphere”, Ocean Engineering, 2021.

16. T. Zhao, X. Zhao*, X. Ma, B. Huang “Numerical investigations of the bubble collapse near an elastic plate”, Journal of Fluids and Structures, 2021.

17. C. Zhang and X. Zhao* “Theoretical method for calculating the sea ice elastic modulus in an ocean wave model”, Applied Ocean Research, 2021.

18. J. Huang and X. Zhao*, H. Jiang “Numerical simulation of the atomization of liquid transverse jet in supersonic airflow”, Physics of Fluids, 2021.

19. C. Zhang and X. Zhao* “Theoretical model for predicting the break-up of ice covers due to wave-ice interaction”, Applied Ocean Research, 2021.

20. H. Ren, C. Zhang, X. Zhao* “Numerical simulations on the fracture of a sea ice floe induced by waves”, Applied Ocean Research, 2021.

21. X. Zhao* and C. Zhang “A theoretical model of the wave growth induced by the wind over an ice-covered sea”, Boundary Layer Meteorology, 2020.

22. D. Li, X. Zhao* et al. “Numerical investigation of the water entry of a hydrophobic sphere with spin”, International Journal of Multiphase flow, 2020.

23. J. Shentu, T. Zhao, D. Li, and X. Zhao* “Numerical simulations for water entry of hydrophobic objects”, Ocean Engineering, 2019.

24. J. Huang and X. Zhao* "Numerical simulation on the atomization and evaporation in the liquid jet flows", International Journal of Multiphase flow, 2019.

25. X. Ma, X. Zhao*, B. Huang, and G. Wang "Physical investigation on the non-spherical bubble collapse near a rigid boundary", Journal of Hydrodynamics, 2019.

26. X. Zhao* and H.-H. Shen “A three-layer viscoelastic model with eddy viscosity effect for flexural-gravity wave propagation through ice covers”, Ocean Modelling, 2018.

27. X.Ma, B. Huang*, X. Zhao* et al. "Comparisons of spark-charge bubble dynamics near the elastic and rigid boundaries", Ultrasonics Sonochemistry, 2018.

28. X. Zhao, S.-K. Cheng and H.-H. Shen* “Physical nature of wave modes in the viscoelastic layer model”, ASCE Journal of Engineering Mechanics, 2017.

29. X. Zhao* and H.-H. Shen “A diffusion approximation for wave scatterings by randomly distributed ice floes”, Ocean Modeling, 2016.

30. X. Zhao and H.-H. Shen* “Ocean wave transmission and reflection by viscoelastic ice covers”, Ocean Modeling, 2015.

31. X. Zhao and H.-H. Shen* “Wave propagation in frazil/pancake, pancake and fragmented ice covers”, Cold Regions Science and Technology, 2015.

32. X. Zhao*, H.-H. Shen and S.-K. Cheng “Modeling ocean wave propagation under sea ice covers”, Acta Mechanica Sinica, 2015.

33. X. Zhao and H.-H. Shen* “Ocean wave transmission and reflection between two connecting viscoelastic ice covers: an approximate solution”, Ocean Modeling, 2013.

34. X. Zhao* “Time frequency spectrum of atmospheric turbulence and sweeping hypothesis”, Theoretical and Applied Mechanics Letters, 2011.

35. X. Zhao and G.-W. He* “Space-time correlation of fluctuating velocities in turbulent shear flows”, Physical Review E, 2009.

36. G.-W. He*, G.-D. Jin and X. Zhao “Scale-similarity model for Lagrangian velocity correlations in isotropic and stationary turbulence”, Physical Review E, 2009.


友情链接
  • 学校主页
  • 党委教师工作部/人力资源部
  • 教务部
  • 研究生院
  • 计划财务部
  • 科学技术研究院/军民融合创新研究院
  • 资产与实验室管理处
  • 国际交流合作处/港澳台办公室
  • 教师发展中心
版权所有:ld体育官网 - ld乐动体育官方网站北京理工大学