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个人简介

主持和参与课题多项,其中主持国家级课题一项(26w),横向课题一项(94w),校级启动经费课题(20w);以第一作者或通讯作者发表论文17篇,其中2篇发表于流体力学领域TOP1期刊JFM,ESI高被引论文2篇。 备注:欢迎热动、机械、力学、交通专业联系读研,特别欢迎有航天航空专业背景的 教育经历 2008-2012:哈尔滨工业大学本科 热能与动力工程 2012-2014:哈尔滨工业大学硕士 动力机械及工程 2014-2018:哈尔滨工业大学博士 流体机械及工程 工作经历 2018/10-至今 中南大学 讲师

研究领域

构振动和噪声、结构换热、机器学习等。背景涉及到轨道交通以及航天航空。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Selected publications(First or corresponding author#) [1] Qin, B., Chang, J.#, Jiao, X., Bao, W., and Yu, D. (2014). Numerical investigation of the impact of asymmetric fuel injection on shock train characteristics. Acta Astronautica, 105(1), 66-74.(JCR Q1) [2] Qin, B., Chang, J.#, Jiao, X., and Bao, W. (2015). Unstart Margin Characterization Method of Scramjet Considering Isolator–Combustor Interactions. AIAA Journal, 53(2), 493-500.(JCR Q1) [3] Qin, B., Alam, M.M.#, and Zhou, Y., (2017). Two tandem cylinders of different diameters in crossflow: flow-induced vibration. Journal of Fluid Mechanics. 829, 621-658.(JCR Q1,流体力学领域TOP1) [4] Qin, B., Alam, M.M.#, Ji, C.N., Liu, Y., and Xu, S.J, (2018). Flow induced vibration of two tandem cylinders of different natural frequencies. Ocean Engineering. 155, 189-200.(JCR Q1) [5] Qin, B., Alam, M. M.#, & Zhou, Y. (2019). Free vibrations of two tandem elastically mounted cylinders in crossflow. Journal of Fluid Mechanics, 861, 349-381.(JCR Q1,流体力学领域TOP1) [6] Qin, B., Choe, K., Wu, Q., Wang, T., & Wang, Q.#(2019). A unified modeling method for free vibration of open and closed functionally graded cylindrical shell and solid structures. Composite Structures, 223, 110941.(JCR Q1) [7] Qin, B., Choe, K., Wang, T., & Wang, Q.#(2019). A unified Jacobi-Ritz formulation for vibration analysis of the stepped coupled structures of doubly-curved shell. Composite Structures, 220, 717-735.(JCR Q1) [8] Qin, B., Zhong, R., Wu, Q., Wang, T., & Wang, Q.#(2019). A unified formulation for free vibration of laminated plate through Jacobi-Ritz method. Thin-Walled Structures, 144, 106354.(JCR Q1) [9] Qin, B., Zhong, R., Wang, T., Wang, Q., Xu Y. & Hu, Z.#(2020) A unified Fourier series solution for vibration analysis of FG-CNTRC cylindrical, conical shells and annular plates with arbitrary boundary conditions. Composite Structures, 111549. (JCR Q1, ESI 高被引论文) [10] Liu, T., Wang, A., Wang, Q., & Qin, B.#(2020). Wave based method for free vibration characteristics of functionally graded cylindrical shells with arbitrary boundary conditions. Thin-Walled Structures, 148, 106580. (JCR Q1,ESI高被引论文) [11] Wang, Q., Zhong, R., Qin, B.#, & Yu, H.#(2020). Dynamic analysis of stepped functionally graded piezoelectric plate with general boundary conditions. Smart Materials and Structures. 29(3) (JCR Q1) [12] Qin, B., Zhao X.#, Liu, H.H., Yu Y.G. & Wang Q.S. (2020) Free vibration analysis of curved laminated composite beams with different shapes, lamination schemes and boundary conditions. Materials, 13(4), 1010. (JCR Q2) [13] Qin, B., Zhong, R., Wang, Q.#, & Zhao, X. (2020). A Jacobi-Ritz approach for FGP beams with arbitrary boundary conditions based on a higher-order shear deformation theory. Composite Structures, 112435. (JCR Q1) [14] Wang, Q., Zhong, R., Qin, B.#, & Yu, H.# (2020). Dynamic analysis of stepped functionally graded piezoelectric plate with general boundary conditions. Smart Materials and Structures, 29(3), 035022. (JCR Q1) [15] Wang, Q., Xie, F., Liu, T., Qin, B.#, & Yu, H.# (2020). Free vibration analysis of moderately thick composite materials arbitrary triangular plates under multi-points support boundary conditions. International Journal of Mechanical Sciences, 105789. (JCR Q1) [16] Wang, Q., Xie, F., Qin, B. #, Zhong, R., & Yu, H. (2020). Dynamics and power flow control of irregular elastic coupled plate systems: precise modeling and experimental validation. International Journal of Mechanical Sciences, 105760. (JCR Q1) [17] Qin, B., Wang, Q.#, Zhong, R., Zhao, X., Shuai, C. (2020). A three-dimensional solution for free vibration of FGP-GPLRC cylindrical shells resting on elastic foundations: a comparative and parametric study. International Journal of Mechanical Sciences, 105896 (JCR Q1)

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