학술논문

Energy Budget Characterisation of the Optimal Disturbance in Stratified Shear Flow
Document Type
Academic Journal
Source
Fluids. May, 2024, Vol. 9 Issue 5
Subject
Force and energy
Budget
Language
English
ISSN
2311-5521
Abstract
Stratified Taylor–Couette flow (STCF) undergoes transient growth. Recent studies have shown that there exists transient amplification in the linear regime of counter-rotating STCF. The kinetic budget of the optimal transient perturbation is analysed numerically to simulate the interaction of the shear production (SP), buoyancy flux (BP), and other energy components that contributes to the total optimal transient kinetic energy. These contributions affect the total energy by influencing the perturbation to extract kinetic energy (KE) from the mean flow. The decay of the amplification factor resulted from the positive amplification of both BP and SP, while the growth is attributed to the negative and positive amplification of BP and SP, respectively. The optimal SP is positively amplified, implying that there is the possibility of constant linear growth. These findings agree with the linear growth rate for increasing values of Grashof number.
Author(s): Larry E. Godwin [1]; Philip M. J. Trevelyan [1]; Takeshi Akinaga [2]; Sotos C. Generalis (corresponding author) [1,*] 1. Introduction The Taylor–Couette system consists of a thin layer of [...]