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EPTT 2020
12th Spring School on Transition and Turbulence
TURBULENT KINETIC ENERGY ANALYSIS IN TWO-DIMENSIONAL LID-DRIVEN CAVITY FLOWAT Re=100,000
Submission Author:
Luiz Hegele , SC
Co-Authors:
Maicon Vinicius Ritter Deggeroni, Juan Pablo de Lima Costa Salazar, Diogo Nardelli Siebert, Luiz Hegele
Presenter: Maicon Vinicius Ritter Deggeroni
doi://10.26678/ABCM.EPTT2020.EPT20-0129
Abstract
Simulation results based on the lattice Boltzmann method are shown for the turbulent lid-driven twodimensional cavity flow at Reynolds number 100,000. We make use of a boundary condition scheme that significantly improves stability for simulation of turbulent flows within the lattice Boltzmann method framework. Explicit expressions for the turbulent kinetic energy budget are presented and its evolution is studied in 2D turbulence. We also look at the evolution of enstrophy and palinstrophy.
Keywords
Turbulent kinetic energy, Lattice Boltzmann method, Lid-driven cavity, High Reynolds Number