Full Name
Chang Shu
Variants
Shu, C.
Chang, S.
Shu, Chang
Shu Chang
 
Main Affiliation
 
 
Email
mpeshuc@nus.edu.sg
 

Publications

Refined By:
Author:  Shu, C.
Subject:  Natural convection

Results 1-12 of 12 (Search time: 0.008 seconds).

Issue DateTitleAuthor(s)
120-Jul-2006Adaptive mesh refinement-enhanced local DFD method and its application to solve Navier-Stokes equationsShu, C. ; Wu, Y.L. 
22013An efficient immersed boundary method for thermal flow problems with heat flux boundary conditionsRen, W.; Shu, C. ; Yang, W. 
330-Mar-2012Boundary condition-enforced immersed boundary method for thermal flow problems with Dirichlet temperature condition and its applicationsRen, W.W.; Shu, C. ; Wu, J.; Yang, W.M. 
4Nov-2002Development of RBF-DQ method for derivative approximation and its application to simulate natural convection in concentric annuliWu, Y.L. ; Shu, C. 
515-Mar-2002Domain-free discretization method for doubly connected domain and its application to simulate natural convection in eccentric annuliShu, C. ; Wu, Y.L. 
620-Feb-2002Efficient computation of natural convection in a concentric annulus between an outer square cylinder and an inner circular cylinderShu, C. ; Zhu, Y.D. 
723-May-2003Implementation of multi-grid approach in domain-free discretization method to speed up convergenceWu, Y.L. ; Shu, C. ; Qiu, J.; Tani, J.
828-Feb-2007Integrated radial basis functions-based differential quadrature method and its performanceShu, C. ; Wu, Y.L. 
9Feb-2004Numerical simulation of natural convection between two elliptical cylinders using DQ methodZhu, Y.D. ; Shu, C. ; Qiu, J.; Tani, J.
10Feb-2002Numerical simulation of natural convection in a square cavity by SIMPLE-generalized differential quadrature methodShu, C. ; Wee, K.H.A.
11Dec-2002Simulation of natural convection in a square cavity by Taylor series expansion- and least squares-based lattice Boltzmann methodShu, C. ; Peng, Y.; Chew, Y.T. 
12Apr-2007Three-dimensional lattice kinetic scheme and its application to simulate incompressible viscous thermal flowsPeng, Y.; Shu, C. ; Chew, Y.T.