RUS  ENG
Full version
JOURNALS // Numerical methods and programming // Archive

Num. Meth. Prog., 2024 Volume 25, Issue 4, Pages 441–452 (Mi vmp1135)

Methods and algorithms of computational mathematics and their applications

Analysis of the efficiency of numerical dissipation regulation in computer modeling of gas and gas suspension dynamics

E. N. Shirokova, D. V. Sadin

Mozhaysky Military Space Academy

Abstract: The work is devoted to studying the dissipative properties of the hybrid large-particle method of the second order of approximation. The regularization of the numerical solution is provided in two ways: nonlinear correction of artificial viscosity (at the Eulerian stage) and hybrid approximation of spatial derivatives through various nonlinear restrictive functions (at the Lagrangian stage). The dissipative properties of the method are demonstrated by the example of the Sod problem, its modification with the reflection of the shock wave from the wall. The flow of a gas suspension during the decay of an arbitrary discontinuity with a small initial pressure ratio at various Stokes numbers has been studied. Numerical solutions are compared with asymptotically exact solutions.

Keywords: computer technology, hybrid large-particle method, dissipative properties.

UDC: 519.63

Received: 20.08.2024

DOI: 10.26089/NumMet.v25r433



© Steklov Math. Inst. of RAS, 2025