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4035
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1.
Adaptive moving mesh upwind scheme for the two-species chemotaxis ..
[1214]
2.
AN ASYMPTOTIC PRESERVING SCHEME FOR KINETIC CHEMOTAXIS MODELS IN T..
[1177]
3.
An asymptotic preserving scheme for the two-dimensional shallow wa..
[1173]
4.
Well-balanced schemes for the Euler equations with gravitation: Co..
[1171]
5.
A New Approach for Designing Moving-Water Equilibria Preserving Sc..
[1169]
6.
Well-balanced positivity preserving central-upwind scheme with a n..
[1166]
7.
A Second-Order Finite-Difference Method for Compressible Fluids in..
[1145]
8.
High-order positivity-preserving hybrid finite-volume-finite-diffe..
[1143]
9.
Well-balanced schemes for the shallow water equations with Corioli..
[1139]
10.
PATH-CONSERVATIVE CENTRAL-UPWIND SCHEMES FOR NONCONSERVATIVE HYPER..
[1130]
11.
Three-dimensional shallow water system: A relaxation approach
[281]
12.
Well-balanced numerical method for atmospheric flow equations with..
[160]
13.
Flux Globalization Based Well-Balanced Path-Conservative Central-U..
[125]
14.
Well-Balancing via Flux Globalization: Applications to Shallow Wat..
[116]
15.
A well-balanced central-upwind scheme for the thermal rotating sha..
[112]
16.
One-Dimensional/Two-Dimensional Coupling Approach with Quadrilater..
[111]
17.
Hybrid Multifluid Algorithms Based on the Path-Conservative Centra..
[108]
18.
Thermal versus isothermal rotating shallow water equations: compar..
[105]
19.
An adaptive well-balanced positivity preserving central-upwind sch..
[103]
20.
Finite-Volume-Particle Methods for the Two-Component Camassa-Holm ..
[102]
21.
MOVING-WATER EQUILIBRIA PRESERVING PARTIAL RELAXATION SCHEME FOR T..
[96]
22.
High-Resolution Positivity and Asymptotic Preserving Numerical Met..
[95]
23.
Moist-convective thermal rotating shallow water model
[94]
24.
Semi-discrete central-upwind Rankine-Hugoniot schemes for hyperbol..
[90]
25.
Numerical dissipation switch for two-dimensional central-upwind sc..
[82]
26.
A simple finite-volume method on a cartesian mesh for pedestrian f..
[75]
27.
Adaptive Moving Mesh Central-Upwind Schemes for Hyperbolic System ..
[74]
28.
Stochastic Galerkin Method for Cloud Simulation
[73]
29.
Fifth-order A-WENO schemes based on the path-conservative central-..
[72]
30.
Flux globalization based well-balanced central-upwind scheme for o..
[71]
31.
Interaction of tropical cyclone-like vortices with sea-surface tem..
[69]
32.
Well-balanced path-conservative central-upwind schemes based on fl..
[69]
33.
On convergence of numerical methods for optimization problems gove..
[66]
34.
数学研究通讯
[66]
35.
Finite-volume schemes for shallow-water equations
[65]
36.
OPERATOR SPLITTING BASED CENTRAL-UPWIND SCHEMES FOR SHALLOW WATER ..
[61]
37.
Stochastic Galerkin method for cloud simulation. Part II: A fully ..
[60]
38.
SECOND-ORDER FULLY DISCRETE CENTRAL-UPWIND SCHEME FOR TWO-DIMENSIO..
[59]
39.
Fifth-order a-weno finite-difference schemes based on a new adapti..
[59]
40.
Flux globalization based well-balanced path-conservative central-u..
[59]
41.
Local characteristic decomposition based central-upwind scheme
[55]
42.
Well-balanced positivity preserving adaptive moving mesh central-u..
[54]
43.
Flux Globalization Based Well-Balanced Central-Upwind Schemes for ..
[48]
44.
New Low-Dissipation Central-Upwind Schemes
[48]
45.
Fifth-Order A-WENO Schemes Based on the Adaptive Diffusion Central..
[47]
46.
A diffuse-domain-based numerical method for a chemotaxis-fluid mod..
[46]
47.
A WELL-BALANCED ASYMPTOTIC PRESERVING SCHEME FOR THE TWO-DIMENSION..
[45]
48.
Hybrid Finite-Volume-Particle Method for Dusty Gas Flows
[37]
49.
On the Accuracy of Shock-Capturing Schemes Calculating Gas-Dynamic..
[35]
50.
A Well-Balanced Partial Relaxation Scheme for the Two-Dimensional ..
[32]
51.
A FLUX GLOBALIZATION BASED WELL-BALANCED PATH-CONSERVATIVE CENTRAL..
[30]
52.
Adaptive High-Order A-WENO Schemes Based on a New Local Smoothness..
[27]
53.
Comparative Analysis of the Accuracy of Three Different Schemes in..
[27]
54.
Fifth-Order A-WENO Path-Conservative Central-Upwind Scheme for Beh..
[27]
55.
Experimental convergence rate study for three shock-capturing sche..
[16]
56.
Special Issue Dedicated to Professor Tao Tang's 60th Birthday
[14]
57.
Preface Special Issue Dedicated to Professor Tao Tang’s 60th Birt..
[12]
58.
New High-Order Numerical Methods for Hyperbolic Systems of Nonline..
[2]
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Adaptive Moving Mesh Central-Upwind Schemes for Hyperbolic System ..
[1]
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