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Items where Author is "Li, Zhenquan"

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Number of items: 10.

Journal Article

Li, Zhenquan and Singh, Niharika N. (2009) Creating streamribbons based on mass conservative streamlines. International Journal of Mathematical, Physical and Engineering Sciences, 3 (2). pp. 103-107. ISSN 1307-7465

Raj, Nawin and Li, Zhenquan (2008) Creating streamtubes based on mass conservative streamlines. International Journal of Mathematical, Physical and Engineering Science, 2 (1). pp. 41-45. ISSN 1307-7465

Li, Zhenquan (2008) An adaptive two-dimensional mesh refinement method based on the law of mass conservation. Journal of Flow Visualization and Image Processing, 15 (1). pp. 17-33. ISSN 1065-3090

Li, Zhenquan and Roberts, A.J. (2007) Low-dimensional modeling of a generalised burgers equation. Global Journal of Pure and Applied Mathematics, 3 (3). pp. 203-218. ISSN 0973-1768

Li, Zhenquan (2007) An adaptive three-dimensional mesh refinement method based on the law of mass conservation. Journal of Flow Visualization and Image Processing, 14 (4). pp. 375-395. ISSN 1065-3090

Li, Zhenquan and Roberts, A.J. (2007) A flexible error estimate for the application of centre manifold theory. Global Journal of Pure and Applied Mathematics, 3 (3). pp. 241-249. ISSN 0973-1768

Singh, Roslyn P. and Li, Zhenquan (2007) A mass conservative streamline tracking method for three dimensional CFD velocity fields. Journal of Flow Visualization and Image Processing, 14 (1). pp. 107-120. ISSN 1065-3090

Li, Zhenquan and Mallinson, G. (2006) Dual stream function visualization of flows fields dependent on two variables. Computing and Visualization in Science, 9 (1). pp. 33-41. ISSN 1432-9360

Roberts, A.J. and Li, Zhenquan (2006) An accurate and comprehensive model of thin fluid flows with inertia on curved substrates. Journal of Fluid Mechanics, 553 (1). pp. 33-73. ISSN 0022-1120

Li, Zhenquan (2006) An adaptive streamline tracking method for two-dimensional CFD velocity fields based on the law of mass conservation. Journal of Flow Visualization and Image Processing, 13 (1). pp. 1-14. ISSN 1065-3090

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