基本情况
朱庆勇,博士,中山大学教授,博士生导师。
研究领域
长期从事计算流体力学、生物流体力学、偏微分方程数值计算、传热传质学等方面的研究工作
论文发表
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Q. Y. Zhu*, M. H. Xie, J. Yang, Y. Li. A fractal model for the coupled heat and mass transfer in porous fibrous media, International Journal of Heat and Mass Transfer (2011) 54: 1400–1409
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X. J. Ran, Q. Y. Zhu*, Y. Li. Investigation on heat and mass transfer in 3D woven fibrous material, International Journal of Heat and Mass Transfer (2011) 54: 3575–3586
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Q. Wang, Q. Y. Zhu*, M. Z. Liu. Stability and oscillations of numerical solutions for differential equations with piecewise continuous arguments of alternately advanced and retarded type, Journal of Computational and Applied Mathematics, 2011
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Q. Wang, Q. Y. Zhu*. Stability analysis of Runge–Kutta methods for differential equations with piecewise continuous arguments of mixed type, International Journal of Computer Mathematics 2011: 88 (5): 1052–1066
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Q. Y. Zhu*, M. H. Xie, J. Yang, Y. Li. Investigation of the 3D model of coupled heat and liquid moisture transfer in hygroscopic porous fibrous media, International Journal of Heat and Mass Transfer (2010) 53: 3914–3927
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Q.Y. Zhu,*, Y. Li. Numerical simulation of the transient heat and liquid moisture transfer through porous textiles with consideration of electric double layer, International Journal of Heat and Mass Transfer (2010) 53: 1417–1425
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X. J. Ran, Q. Y. Zhu*, Y. Li. An explicit series solution of the squeezing flow between two infinite plates by means of the homotopy analysis method, Communications in Nonlinear Science and Numerical Simulation (2009) 14: 119–132
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Q.Y. Zhu, C. K. Chan*. High-order upwind compact scheme and simulation of turbulent premixed V-flame, International Journal for Numerical Methods in Fluids (2005) 49: 701–720
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Q.Y. Zhu*, Y. Li. An upwind compact approach with group velocity control for compressible flow flields, International Journal for Numerical Methods in Fluids (2004) 44: 463–482
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Q.Y. Zhu*, Y. Li. Effects of pore size distribution and fiber diameter on the coupled heat and liquid moisture transfer in porous textiles, International Journal of Heat and Mass Transfer (2003) 46: 5099–5111