一、个人概况
石磊,男,江苏溧阳人,法国国立高等工艺学院/江苏大学双博士学位,资格教授,硕士生导师,首批博士后人才专项获得者。先后主持国家青年科学基金项目(C类)、国家重点国际(地区)合作研究项目(校内第一)、江苏省青年基金、中国博士后面上及江苏大学金山论坛高层次人才项目。主要从事多自由度振荡翼型绕流、空天海洋摆线桨及其系统内流及优化、湍流模型修正及开发、水动力学空化及控制、流动仿生机理及控制等基础理论及应用研究。以第一作者在International Journal of Mechanical Sciences、Energy Conversion and Management、Energy、Journal of Fluids and Structures、Ocean Engineering、Applied Mathematical Modelling、European Journal of Mechanics B-Fluids、Fluid Dynamic Research、International Journal of Multiphase Flow等知名国际刊物发表SCI论文10余篇,担任Physics of Fluids、Ocean Engineering、Energy、 International Journal of Heat and Mass Transfer、Applied Thermal Engineering、水动力学研究与进展等期刊审稿人。参编《轴流泵复杂湍流空化机理》著作。积极开展国际交流与合作,与法国国立高等工艺学院、美国弗吉尼亚理工大学等建立了长期合作关系。在国际水力机械、国际旋转机械动力学会议、第十二届海岸与海洋工程国际会议等做会场报告。担任第17届亚洲流体机械国际学术会议分会场主席。
二、教育经历
2022.09-至今 江苏大学流体机械工程技术研究中心,资格教授
2017.10-2021.12 法国国立高等工程技术学校 能源工程 博士 (导师: Olivier Coutier-Delgosha教授)
2016.09-2022.06 江苏大学 动力工程及工程热物理 博士 (导师: 张德胜研究员)
2013.09-2016.06 江苏大学 流体机械及工程 硕士 (导师: 张德胜研究员)
2009.09-2013.06 江苏大学 热能与动力工程
三、研究方向
[1] 多自由度振荡翼型绕流特性及能量收集装置研发
[2] 空天海洋摆线桨及其系统内流及优化
[3] 混合模型、转捩模型修正开发及工程应用
[4] 水翼及复杂水力机械不稳定空化
[5] 流动仿生控制机制及应用
四、科研奖励及项目
[1] 国家青年科学基金项目(C类),2026-2028,主持,在研
[2] 国家重点国际(地区)合作研究项目,2026-2030,校内第一,在研
[3] 博士后引才专项,2023-2026,个人奖励
[4] 江苏省自然科学基金青年项目,2023.07-2026.06,主持,在研
[5] 中国博士后科学基金面上项目,2023.07-2025.07,主持,结题
[6] 江苏大学高级人才科研启动基金,2022.09-2025.09,主持,在研
[7] 国际合作项目(美国弗吉尼亚理工大学-法国国立高等工程技术学校),摆线桨不稳定涡流分析及优化,博士课题
[8] 国际合作项目(美国弗吉尼亚理工大学-法国国立高等工程技术学校),半浸式螺旋桨通气空化特性研究,主要参与
[9] 国家自然科学基金面上项目,轴流泵尾缘垂直空化涡初生及其诱导流场失稳的机理研究(51776087),2018-2021,主要参与
[10] 国家自然科学基金面上项目,轴流泵叶顶泄漏涡云状空化脱落机理与不稳定性控制(51479083),2015-2018,主要参与
五、主要获奖
[1] 大型引调水工程水力机械高效稳定设计理论及重大工程应用,教育部科技进步二等奖,2025
六、代表性论文
[1] Shi, L., Wang, Y., & Zhang, D. (2026). Unsteady loads of in-line tandem hybrid fixed-pitching airfoil systems in a streamwise superimposed inflow. International Journal of Mechanical Sciences, 310, 111082. (SCI,JCR一区)
[2] Shi, L., Wang, Y., & Zhang, D. (2025). Response of unsteady loads and flow structures of pitching airfoil and cycloidal propeller in a surging inflow. Physics of Fluids, 37, 047152. (SCI,JCR一区)
[3] Shi, L., Wang, Y., Wang, M., & Zhang, D. (2024). Application of deflected leading and trailing edges to pitching airfoils and cycloidal rotor. Energy Conversion and Management, 308, 118393. (SCI,JCR一区)
[4] Shi, L., Zhang, D., Bayeul-Lainé, A. C., & Coutier-Delgosha, O. (2023). Analysis of performance and flow structures of cycloidal rotors under different pitch-pivot-point and blade camber conditions. Energy, 282, 128997. (SCI,JCR一区)
[5] Shi, L., Zhang, D., Bayeul-Lainé, A. C., & Coutier-Delgosha, O. (2023). Effect of pitching angle, pitch-pivot-point, blade camber and deflected sharp leading edge on performance and vortical flows of reversed pitching airfoils. Ocean Engineering, 280, 114637. (SCI,JCR一区)
[6] Shi, L., Wang, Y., Zhang, D., Bayeul-Lainé, A. C., & Coutier-Delgosha, O. (2022). Parametrical study on separation-induced transition and vortex dynamics of a reversed pitching airfoil. Ocean Engineering, 264, 111665. (SCI,JCR一区)
[7] Shi, L., Bayeul-Lainé, A. C., & Coutier-Delgosha, O. (2022). Analysis of flow-induced performance change of cycloidal rotors: Influence of pitching kinematic and chord-to-radius ratio. Ocean Engineering, 263, 112382. (SCI,JCR一区)
[8] Shi, L., Bayeul-Lainé, A. C., & Coutier-Delgosha, O. (2022). Numerical investigations on unsteady vortical flows and separation-induced transition over a cycloidal rotor at low Reynolds number. Energy Conversion and Management, 266, 115812. (SCI,JCR一区)
[9] Shi, L., Wang, Y., Bayeul-Laine, A. C., & Coutier-Delgosha, O. (2022). Effect of time-varying freestream on performance and vortex dynamics of forward and reversed pitching airfoils. Journal of Fluids and Structures, 110, 103508. (SCI,JCR一区)
[10] Shi, L., & Wang, Y. (2021). Numerical investigations on transitional flows around forward and reversed hydrofoils. European Journal of Mechanics-B/Fluids, 85, 24-45. (SCI,JCR二区)
[11] Shi, L., Wang, Y., Zhang, G., Jin, Y., & Zhang, D. (2020). Assessment of an improved turbulence model in simulating the unsteady flows around a D-shaped cylinder and an open cavity. Applied Mathematical Modelling, 83, 552-575. (SCI,JCR一区)
[12] Shi, L., Wang, Y., Jin, Y., Zhang, G., & Zhang, D. (2019). Parametrical study and turbulence analysis of high-speed flows around an open cavity using large eddy simulation. Fluid Dynamics Research, 51(3), 035503. (SCI,JCR四区)
[13] Shi, L., Zhang, D., Zhao, R., Shi, W., & Jin, Y. (2017). Effect of blade tip geometry on tip leakage vortex dynamics and cavitation pattern in axial-flow pump. Science China Technological Sciences, 60(10), 1480-1493. (SCI,JCR二区)
[14] Shi, L., Zhang, D., Jin, Y., Shi, W., & van Esch, B. B. (2017). A study on tip leakage vortex dynamics and cavitation in axial-flow pump. Fluid Dynamics Research, 49(3), 035504. (SCI,JCR四区)
[15] Zhang, D., Shi, L., Zhao, R., Shi, W., Pan, Q., & van Esch, B. P. M. (2017). Study on unsteady tip leakage vortex cavitation in an axial-flow pump using an improved filter-based model. Journal of Mechanical Science and Technology, 31(2), 659-667. (SCI,JCR三区)
[16] Zhang, D., Shi, L., Shi, W., Zhao, R., Wang, H., & Van Esch, B. B. (2015). Numerical analysis of unsteady tip leakage vortex cavitation cloud and unstable suction-side-perpendicular cavitating vortices in an axial flow pump. International Journal of Multiphase Flow, 77, 244-259. (SCI,JCR一区)
七、联系方式
E-mail:mumuyedda@126.com
电话:18362888500
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