职称:副教授 博士生导师
邮箱:lei_zhao@tju.edu.cn
专业:流体力学
办公地址:天津市津南区天津大学北洋园校区力学大楼(36楼)333办公室
【概况】
赵磊,河南周口人,天津大学机械工程学院力学系副教授,博士生导师,于2011年和2017年分别获得天津大学学士和流体力学博士学位。主要研究方向为流动稳定性理论,主要涵盖两个方面:1、与边界层转捩机理、预测及控制相关的流动稳定性理论,2、与磁约束核聚变装置托卡马克相关的磁流体稳定性理论。讲授课程包括工程力学、工程流体力学、边界层理论等。以第一或通讯作者在流体力学权威期刊JFM(7篇)、PRF、PoF等发表论文20余篇。主持国家自然科学基金青年基金和面上项目,主持JKW基础加强重大和重点项目子课题、课题等,主持重点企业合作项目等。欢迎具备力学、数学、物理或计算机等相关学科背景的学生推免或者报考本人的硕士、博士研究生;可提供高水平学术平台和科研津贴。
【教育背景】
2011.9-2017.1 天津大学 博士 2007.9-2011.7 天津大学 本科
【学术经历】
2023.6-至今 天津大学 准聘副教授 博士生导师 2019.7-2023.5 天津大学 助理教授 硕士生导师(2020.8-至今) 2017.8-2019.7 中国空气动力研究与发展中心 博士后
【讲授课程】
本科生课程《工程流体力学》 本科生课程《工程力学》 本研贯通课程《边界层理论》
【教学成果】
2023年天津大学优秀硕士学位论文指导教师。
【研究方向】
流动稳定性理论: 1、与边界层转捩机理、预测及控制相关的流动稳定性理论 2、与磁约束核聚变装置托卡马克相关的磁流体稳定性理论。 主要面向航空、航天及磁约束核聚变等工业领域开展基础科学研究。
【学术兼职】
2024-,《海军航空大学学报》青年编委 2025-,《气体物理》青年编委 2025-,《Theoretical and Applied Mechanics Letters, TAML》青年编委
【科研项目及成果】
主持科研项目: 纵向课题: 1. 2026-2028,基础加强重点项目,在研,课题一负责人。项目由航天十一院、天津大学、国防科大、华中科大、航天一院联合承研。 2. 2025-2026,天津大学自主基金,极应用-先进技术-重点项目,在研,负责人。 3. 2024-2027,国家自然科学基金面上项目,头部激波和熵层对高超声速圆锥边界层感受性的影响及SF-HLNS预测方法。在研,负责人。 4. 2021-2024,国家自然科学基金企业联合基金重点项目,临近空间飞行器表面烧蚀形貌对边界层转捩影响的关键机理。已结题(获评优秀),本单位负责人,项目由中科院力学所、天津大学、航天十一院联合承研。 5. 2021-2023,国家自然科学基金青年基金,高超声速边界层中条带对自由流扰动的感受性机理。已结题,负责人。 6. 2021-2024,基础加强项目子课题。总经费100万元,已结题,负责人。 7. 2024-2025,领域基金。已结题,本单位负责人,项目由航天十一院、航天一院、天津大学联合承研。 8. 2024-2024,基础研究项目。总经费25.7万元,已结题,负责人。 横向项目: 9. 2026-2027,北京应用物理与计算数学研究所,稳定性理论与模拟研究,总经费28万元,在研,负责人。 10.2025-2026,航天十一院,粗糙形貌影响下的流动稳定性特征,总经费25万元,在研,负责人。 11.2025-2025,航天六院,计算程序开发,总经费32万元,在研,负责人。 12.2024-2025,航空工业气动院,多尺度多模态转捩预测技术研究,总经费110万元,在研,负责人。 13.2024-2025,中国船舶系统院,气动稳定性分析。总经费116万元,已结题,负责人。 14.2021-2022,航天十一院,高超声速复杂曲面边界层流动稳定性分析研究。总经费60万元,已结题,负责人。 15.2020-2024,北京理工大学,外协课题3项。总经费100万元,已结题,负责人。 参与科研项目: 参与其它纵向课题多项。
【代表性论著】
代表性论文: “*”表示通讯作者 [19] Ji Xiaoyang, Dong Ming* and Zhao Lei*. Control of hypersonic boundary-layer transition by suppressing fundamental resonance using surface heating. Journal of Fluid Mechanics, 2025. 1015: p. A49. [18] Zhao Lei, Dong Ming*. Excitation of non-modal perturbations in hypersonic boundary layers by free stream forcing: shock-fitting harmonic linearised Navier–Stokes approach. Journal of Fluid Mechanics, 2025. 1013: p. A44. [17] Song Qinyang, Dong Ming* and Zhao Lei* et al., Influence of spanwise wall vibration on non-modal perturbations subject to freestream vortical disturbances in hypersonic boundary layers. Journal of Fluid Mechanics, 2024. 999: p. A57. [16] Zhao Lei, et al., Numerical investigation on effect of non-parallelism on natural transition in boundary layers around underwater axisymmetric bodies. Physics of Fluids, 2024. 36(11): p. 114101. [15] Song Runjie, Dong Ming* and Zhao Lei*. Principle of fundamental resonance in hypersonic boundary layers: an asymptotic viewpoint. Journal of Fluid Mechanics, 2024. 978: p. A30. [14] Ji Xiaoyang, Dong Ming* and Zhao Lei*. Impact of compliant coating on Mack-mode evolution in hypersonic boundary layers. Journal of Fluid Mechanics, 2023. 974: p. A1. [13] Song Runjie, Dong Ming* and Zhao Lei*. Effect of cone rotation on the nonlinear evolution of Mack modes in supersonic boundary layers. Journal of Fluid Mechanics, 2023. 971: p. A4. [12] Zhao Lei, He Jianhong and Dong Ming*. Asymptotic theory of Mack-mode receptivity in hypersonic boundary layers due to interaction of heating/cooling sources and a freestream sound wave. Journal of Fluid Mechanics, 2023. 963: p. A34. [11] Song Qinyang, Zhao Lei* and Dong Ming*. Effect of porous coatings on the nonlinear evolution of Mack modes in hypersonic boundary layers. Physics of Fluids, 2023. 35(5): p. 054115. [10] Song Runjie, Dong Ming* and Zhao Lei*. Revisit of the oblique-breakdown regime in supersonic boundary layers and mechanism of the extra amplification of streak modes. Physics of Fluids, 2022. 34(10): p. 104110. [9] Song Qinyang and Zhao Lei*. Scattering of Mack modes by solid-porous junctions in hypersonic boundary layers. Physics of Fluids, 2022. 34(8): p. 084104. [8] Zhao Lei and Dong Ming*. Effect of surface temperature strips on the evolution of supersonic and hypersonic Mack modes: Asymptotic theory and numerical results. Physical Review Fluids, 2022. 7(5): 053901. [7] 孙培成, 赵磊*, 董明, 基于HLNS方法对高超声速边界层中非模态扰动演化的研究. 力学进展, 2022. 52(1): p. 180-195. [6] Dong Ming* and Zhao Lei. An asymptotic theory of the roughness impact on inviscid Mack modes in supersonic/hypersonic boundary layers. Journal of Fluid Mechanics, 2021, 913: A22. [5] Zhao Lei, Dong Ming*. Effect of suction on laminar-flow control in subsonic boundary layers with forward-/backward-facing steps. Physics of Fluids. 2020;32(5):054108. [4] Zhao Lei, Dong Ming, Yang Yan-guang*. Harmonic linearized Navier-Stokes equation on describing the effect of surface roughness on hypersonic boundary-layer transition. Physics of Fluids. 2019;31(3):034108.(Editor’s Pick) [3] Song Run-jie#, Zhao Lei#, Huang Zhang-feng*. Conservation relation of generalized growth rate in boundary layers. Applied Mathematics and Mechanics. 2018;39(12):1755-68 [2] Zhao Lei, Yu Gao-tong, Luo Ji-sheng*. Extension of e N method to general three-dimensional boundary layers. Applied Mathematics and Mechanics. 2017;38(7):1007-18. [1] Zhao Lei, Zhang Cun-bo, Liu Jian-xin *, Luo Ji-sheng. Improved algorithm for solving nonlinear parabolized stability equations. Chinese Physics B. 2016;25(8):084701. 其它学术论文: [11] Jiang Genrui, Dong Ming*, and Zhao Lei, Impact of continuously extending/retracting wall on Mack-mode evolution in hypersonic boundary layers. Physics of Fluids, 2024. 36(11): p. 114106. [10] Zhao Lei, Zhou Wenqiang, Li Xinliang, Zhang Shaolong & Zhang Yongming*. 2024. Prediction of Transition Locations in Regions of the Minor Axis of Hypersonic Elliptic Cones Using the BiGlobal-eN Method. Advances in Applied Mathematics and Mechanics. 16 (4). 805-832. [9] 刘洋,赵磊*.高速平板边界层中定常条带的前缘感受性.空气动力学学报,2024,42(04):14-26. [8] 黄加昊, 赵磊*, 赵瑞, 基于调和线性化Navier-Stokes方程的局部感受性. 空气动力学学报, 2024. 42(03): p. 69-82. [7] Xiong, Youde, Zhao Lei and Wu Jie*. Characterization of Disturbance Resonance in Postshock of Blunt Body in Hypersonic Flow. AIAA Journal, 2023: p. 1-8. [6] Song Run-jie, Zhao Lei, Huang Zhang-feng*(a). Improvement of the parabolized stability equation to predict the linear evolution of disturbances in three-dimensional boundary layers based on ray tracing theory. Physical Review Fluids. 2020;5(3):033901. [5] Song Run-jie, Zhao Lei, Huang Zhang-feng*(b). Secondary instability of stationary Görtler vortices originating from first/second Mack mode. Physics of Fluids. 2020;32(3):034109. [4] 李强, 赵磊, 陈苏宇, 江涛, 庄宇, 张扣立*. 展向凹槽及泄流孔对高超声速平板边界层转捩影响的试验研究. 物理学报. 2020;69(02):195-202. [3] Zhao Jin-shan*, Liu Sen, Zhao Lei, Zhang Zhi-gang. Numerical study of total temperature effect on hypersonic boundary layer transition. Physics of Fluids. 2019;31(11):114105. [2] 陈杰*, 赵磊. 高超声速流存在局部稀薄效应的一个判据及相应的流动特性. 空气动力学学报. 2018;36(01):4-11. [1] Chen Jie*, Zhao Lei. Numerical analysis of locally rarefied effects in hypersonic shear flow, 2nd International Workshop on Aerodynamics Covering Flow Regimes, Mianyang, 2017.