Bulletin of the American Physical Society
77th Annual Meeting of the Division of Fluid Dynamics
Sunday–Tuesday, November 24–26, 2024; Salt Lake City, Utah
Session S01: Poster Session & Refreshment Break (3:47 - 4:45 p.m.)
3:47 PM,
Monday, November 25, 2024
Room: Hall C & Hall 1
Abstract: S01.00092 : A Variant of 3D Lorenz Model under Gay-Lussac Approximation and its Dynamical Properties
Presenter:
Caleb C Monoran
(Nevada National Security Sites)
Authors:
Caleb C Monoran
(Nevada National Security Sites)
Sean R Breckling
(Nevada National Security Site (NNSS))
Clifford E Watkins
(Nevada National Security Sites)
Rayleigh-BĂ©nard fluid flow problem using methods of Fourier-Galerkin truncation. An incompressible generalization of this approach is the Gay-Lussac approximation in
which density variation is extended to terms other than gravity of the governing equations (e.g., advection) and expressed as a linear function of temperature. The Gay-
Lussac approach additionally introduces a quantity known as the Gay-Lussac parameter, which describes the effect of thermal convection for buoyancy and advection and is
physically valid for . Following similar Fourier-Galerkin methods, a variant of the Lorenz model with two additional third-order nonlinear terms involving nondimensionalized is
derived from this approximation. When the accepted range for is extended to , the model has been shown to exhibit various dynamical and structural patterns such as
chaotic attraction and changes in equilibrium stability. Dynamical, topological and physical characteristics such as dissipativity are addressed through insight from linear
stability analysis of equilibrium points, computation of the model's Lyapunov spectrum, bifurcation diagrams, and other considerations.
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