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中山大学深圳校区航空航天学院导师教师师资介绍简介-朱庆勇

本站小编 Free考研考试/2021-05-15



朱庆勇

力学系 教授



办公电话
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电子邮件
mcszqy@mail.sysu.edu.cn



朱庆勇,男,教授,博士生导师。教育部新世纪优秀人才,广东省高等学校“千百十”人才工程省级培养对象。担任一个国际学术期刊编辑、《气体物理》、《建模与仿真》、《流体动力学》学术期刊编委,多家国际知名SCI期刊评审员。国际ASCE学会会员,广东省力学学会常务理事,广东省计算数学学会理事。
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联系方式
联系电话:
电子邮件:mcszqy@mail.sysu.edu.cn
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主要经历
2018.06-现在,中山大学,航空航天学院,教授
2006.06-2018.06:中山大学,工学院,教授
2010.10-2011.05:新加坡南洋理工大学,高级研究****
2006.03-2006.05:中山大学,数学与计算科学学院,教授
2004.02-2004.10:香港理工大学,副研究员
2002.05-2003.08:香港理工大学,博士后研究员
2001.06-2006.02:中山大学,数学与计算科学学院,副教授
2000.06-2001.05:香港理工大学,副研究员
2000.01-2001.05:中山大学,数学与计算科学学院,讲师
1997.10-1999.10:中山大学数学博士后流动站计算数学专业,博士后
1992.09-1997.08:中国科学院力学研究所,流体力学,博士
1988.09-1992.07:北京航空航天大学,飞行器设计与应用力学系,学士
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学科方向
空气动力学、计算流体力学、多相流与传热
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科研项目(节选部分)
1. 国家自然科学基金面上项目,**,超声速条件下非均匀多孔介质内液体蒸发与多相流动的建模与计算,2021/01- 2024/12,62万元,在研,主持;
2. 高校基本科研业务费重大项目培育和新兴交叉学科培育计划,17lgjc08,可压缩微纳米粒子多相流的直接数值模拟研究,2017/04- 2018/12,20万元,已结题,主持;
3. 国家自然科学基金重大研究计划,**,多孔有机材料力-热-电-流多场耦合模型与计算,2013/01- 2015/12,70万元,已结题,主持;
4. 国家自然科学基金面上项目,**,高分子纤维材料传热传质过程的多尺度建模与计算,2011/01-2013/12,42万元,已结题,主持;
5. 国家教育部,NCET-06-0731,教育部新世纪优秀人才支持计划,2007/01-2009/12,50万元,已结题,主持;
6. 国家自然科学基金面上项目,**,低渗透有机材料液体流动的特性与模拟,2006/01-2008/12,30万元,已结题,主持;
7. 国家自然科学基金青年科学基金项目,**,多孔有机材料热、湿传递方程的高精度算法研究,2002/01-2004/12,15万元,已结题,主持;
8. 航天领域专项921 工程“大钝头倒锥体三维流场数值模拟”,1993/01-1997/08,已结题;
9. 863高技术项目“天地往返输运系统气动力/热数值模拟研究”,1995/01-1997/08,已结题。
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论著专利
1.第一作者论文(节选部分)
Q.Y. Zhu, C.G. Zhang, W.B. Yang, Fractals, 27(2019):**, The influence of permeability on the ablation process for an ablative material.
Q.Y. Zhu, W.B. Yang, G.H. Wang, H.Z. Yu, Int. J. Heat Mass Tran., 129(2019): 255-264, A study on capillary actions of power-law fluids in porous fibrous materials via W-M function.
Q.Y. Zhu, Y.J. Zhuang, H.Z. Yu, Int. J. Heat Mass Tran., 106(2017): 61~82, Entropy generation due to three-dimensional double-diffusive convection of power-law fluids in heterogeneous porous media.
Q.Y. Zhu, Y.J. Zhuang, H.Z. Yu, Int. J. Heat Mass Tran., 104 (2017): 897~917, Three-dimensional numerical investigation on thermosolutal convection of power-law fluids in anisotropic porous media.
Q.Y. Zhu, W.B. Yang, H.Z. Yu, Fractals, 25 (2017): **-1-12, Study on the permeability of red sandstone via image enhancement.
Q.Y. Zhu, Y.J. Zhuang, H.Z. Yu, Int. J. Heat Mass Tran., 91 (2015): 255~263, An analytical permeability model for power-law fluids in porous fibrous media with consideration of electric double layer.
Q.Y. Zhu, Y.Q. Chen, H.Z. Yu, Comput. Fluids, 92 (2014): 188~198, Numerical simulation of the flow around and through a hygroscopic porous circular cylinder.
Q.Y. Zhu, S.Y. Deng, Y.Q. Chen, J. Non-Newton Fluid, 203(2014): 38~50, Periodical pressure-driven electrokinetic flow of power-law fluids through a rectangular micro channel.
Q.Y. Zhu, D.L. Zhang, S.Y. Deng, Y.Q. Chen, J.J. Sun, Comput. Fluids, 88 (2013): 473~483, High order compact difference schemes for the complex flow fields in anisotropic porous fibrous media with sorption.
Q.Y. Zhu, M.H. Xie, J. Yang, Y.Q. Chen, K. Liao, Int. J. Heat Mass Tran., 55 (2012): 1716~1723, Analytical determination of permeability of porous fibrous media with consideration of electrokinetic phenomena.
Q.Y. Zhu, M.H. Xie, J. Yang, Y.Q. Chen, K. Liao, Int. J. Heat Mass Tran., 55 (2012): 1997~2007, Influence of chitosan and porosity on heat and mass transfer in chitosan-treated porous fibrous material.
Q.Y. Zhu, M.H. Xie, J. Yang, K. Liao, Int. J. Heat Mass Tran., 55(2012): 2365~2376, Investigation on heat and mass transfer in hygroscopic random charged fiber webs.
Q.Y. Zhu, M.H. Xie, J. Yang, Y. Li, Int. J. Heat Mass Tran., 54(2011): 1400~1409, A fractal model for the coupled heat and mass transfer in porous fibrous media.
Q.Y. Zhu, M.H. Xie, J. Yang, Y. Li, Int. J. Heat Mass Tran., 53(2010): 3914~3927, Investigation of the 3D model of coupled heat and liquid moisture transfer in hygroscopic porous fibrous media.
Q.Y. Zhu, Y. Li, Int. J. Heat Mass Tran., 53(2010): 1417~1425, Numerical simulation of the transient heat and liquid moisture transfer through porous textiles with consideration of electric double layer.
Q.Y. Zhu, C.K. Chan, Int. J. Numer. Meth. Fl., 49(2005): 701~720, High-order upwind compact scheme and simulation of turbulent premixed V-flame.
Q.Y. Zhu, Y. Li, Int. J. Numer. Meth. Fl., 44(2004): 463~482, An upwind compact approach with group velocity control for compressible flow fields.
Q.Y. Zhu, Y. Li, Int. J. Heat Mass Tran., 46(2003): 5099~5111, Effects of pore size distribution and fiber diameter on the coupled heat and liquid moisture transfer in porous textiles.
朱庆勇, 计算力学学报, 19(2002) : 78~82, 高精度迎风紧致差分格式与热流计算研究的注记.
朱庆勇, 余怀忠, 马延文, 陶亮, 数值计算与计算机应用, 3(2001): 193~200, 迎风紧致格式与热流计算.
朱庆勇, 卞静, 中山大学学报(自然科学版), 01(2001): 16-19, 三维飞船绕流问题的高精度迎风紧致差分格式.
朱庆勇, 马延文, 计算力学学报, 17(2000): 379~384, 数值求解Navier-Stokes方程的迎风紧致差分格式.
朱庆勇, 高等学校计算数学学报, 22(2000): 169~174, 一个求解双曲型守恒律方程的高分辨率GVC格式.
朱庆勇, 李岳生, 计算数学, 22(2000): 209~218, 数值求解Euler方程的UCGVC差分格式的注记.
朱庆勇, 马延文, 计算物理, 15(1998): 531~536, 求解双曲型守恒律方程的高精度迎风紧致群速度控制法.
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2. 通讯作者论文(节选部分)
S. Liu, Q.Y. Zhu, Int. J. Heat Mass Tran., 138 (2019): 852-843, Experimental and numerical investigations on combined Buoyancy–Marangoni convection heat and mass transfer of power-law nanofluids in a porous composite with complex surface.
J.J. Sun, Q.Y. Zhu, AIP Advances, 2019, 9:025203, A physical model for solving the dredging thermal protection system of hypersonic vehicle leading edge.
Y.J. Zhuang, Q.Y. Zhu, Int. J. Heat Mass Tran., 118(2018):686-707,? Analysis of entropy generation in combined buoyancy-Marangoni convection of power-law nanofluids in 3D heterogeneous porous media.
Y.J. Zhuang, Q.Y. Zhu, Int. J. Heat Fluid Flow, 71(2018):39-54, Numerical study on combined buoyancy-Marangoni convection heat and mass transfer of power-law nanoflds in a cubic cavity filled with a heterogeneous porous medium.
Y.J. Zhuang, H.Z. Yu, Q.Y. Zhu, Int. J. Heat Mass Tran., 115(2017): 670~694, A thermal non-equilibrium model for 3D double diffusive convection of power-law fluids with chemical reaction in the porous medium.
Y.Q. Chen, H.Z. Yu, Q.Y. Zhu, Int. J. Heat Mass Tran., 97(2016): 157~173, A model of coupled thermosolutal convection and thermoelasticity in soft rocks with consideration of water vapor absorption.
Y.J. Zhuang, H.Z. Yu, Q.Y. Zhu, Int. J. Heat Mass Tran., 96(2016): 413~429, Experimental and numerical investigations on the flow around and through the fractal soft rocks with water vapor absorption.
段娟, 陈耀钦, 朱庆勇, 物理学报, 65(2016): 1~13, 微扩张管道内幂律流体非定常电渗流动.
段娟, 朱庆勇, 微纳电子技术, 3(2015): 167~172, 微管道内幂律流体周期性电渗流流场分析.
X.J. Ran, Q.Y. Zhu, Y. Li, Int. J. Heat Mass Tran., 54(2011): 3575~3586, Investigation on heat and mass transfer in 3D woven fibrous material.
Q. Wang, Q.Z. Zhu, M.Z. Liu, J. Comput. Appl. Math., 235(2011): 1542~1552, Stability and oscillations of numerical solutions for differential equations with piecewise continuous arguments of alternately advanced and retarded type.
Q. Wang, Q.Y. Zhu, Int. J. Comput. Math., 88(2011): 1052~1066, Stability analysis of Runge-Kutta methods for differential equations with piecewise continuous arguments of mixed type.
杨静, 朱庆勇, 谢铭慧, 中山大学学报(自然科学版), 49(2010) : 26~29, 纤维表面Zeta电位对多孔纤维材料透湿性能的影响.
X.J. Ran, Q.Y. Zhu, Y. Li, Commun. Nonlinear Sci., 14(2009): 119~132, An explicit series solution of the squeezing flow between two infinite plates by means of the homotopy analysis? method.
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3.授权发明专利(节选部分)
(1) 朱庆勇,庄依杰,余怀忠,王关皓,一种微重力条件下利用电磁控制的热量传递装置及方法,中国,ZL2.X.
(2) 朱庆勇,庄依杰,余怀忠,余绍洋,一种树形散热片,中国,ZL1.8.
(3) 朱庆勇,庄依杰,余怀忠,郭松灿,一种纳米流体的散热装置,中国,ZL9.8.
(4) 朱庆勇,陈耀钦,一种利用毛细力驱动的中空纤维膜液体除湿装置,中国,ZL9.5.
(5) 朱庆勇,陈耀钦,颜益鹏,一种用于微电泳图像识别装置及其方法,中国, ZL8.5.
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