Far East Journal of Dynamical Systems

The Far East Journal of Dynamical Systems publishes original research papers and survey articles in all aspects of dynamical systems, including chaos, fractals, and ergodic theory. It encourages application-oriented research in physics, life sciences, and social sciences.

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TEMPORAL LINEAR STABILITY OF A CONVECTIVE ATMOSPHERIC PARCEL WITH AN AFFINE VELOCITY FIELD

Authors

  • Yao Kramoh
  • François N’doli Koffi
  • Stanille Adjoua Koffi
  • Djédjé Sylvain Zeze

Keywords:

linear temporal stability, convective atmospheric parcel, basic flow, disturbance, boundary layer

DOI:

https://doi.org/10.17654/0972111824008

Abstract

In this article, we study the temporal linear stability of some class of convective atmospheric parcels, assuming an input affine velocity profile. The purpose is to compare the results to those obtained in our previous studies [1].

The assumption of an affine velocity profile led to the establishment of a satisfying base flow since the pressure is hydrostatic and the vertical gradient of the density is decreasing. Subsequently, the disturbance of our basic flow allowed us to obtain dispersion relations whose resolutions have given eigenfrequencies. Numerical analysis of these eigenfrequencies has shown that apparent gravity is not a destabilizing parameter, unlike the real gravity intensity and the entrainment rate, which are destabilizing parameters for the atmospheric cell in full ascent in the atmospheric boundary layer.

Received: June 12, 2024
Revised: July 8, 2024
Accepted: July 30, 2024

References

R. N. Djue, Y. Kramoh, E. Danho and S. K. K. Yanga, On the stability of convective atmospheric flows, Asian Journal of Applied Sciences 6(1) (2013), 29 39.

R. N. Djue, Y. Kramoh, E. Danho and S. K. K. Yanga, Linear stability investigation of an active atmospheric warm cloud flow, Advances and Applications in Fluid Mechanics 15(2) (2014), 101-116.

R. N. Djue, Y. Kramoh, E. Danho and D. B. Asseke, Challenging of self- conversion and capture processes on the stability of active clouds flows, Advances and Applications in Fluid Mechanics 15(2) (2014), 117-129.

R. N. Djue, Y. Kramoh, E. Danho and D. B. Asseke, Linear stability of passive clouds flows, Far East J. Math. Sci. (FJMS) 84(1) (2014), 65-80.

R. N. Djue, Y. Kramoh, E. Danho and D. B. Asseke, Entrainment of surrounding air effects on the stability of passive clouds containing water droplets, Far East J. Math. Sci. (FJMS) 84(1) (2014), 123-138.

A. S. Koffi, Etude de la stabilité de solutions mathématiques issues de la modélisation de systèmes frontaux sous gradients thermiques, Thèse Unique de Doctorat, 2021.

S. A. Koffi, F. N. Koffi and R. N. Djué, Interfacial stabilities in pure convection regime under thermal influence: model of generation of waves in localized ocean-atmosphere interactions, Far East J. Math. Sci. (FJMS) 113(2) (2019), 193-208.

F. Charru, Instabilités hydrodynamiques, Savoirs Actuels, CNRS Éditions, 2007.

Kramoh Yao, Etude de la stabilité linéaire temporelle de variétés-solutions issues de modèles mathématiques d’ecoulement nuageux de type cumulus, Thèse Unique de Doctorat, 2014.

R. N. Djue, Modélisation des interactions et transferts dans les couches nuageuses, Université de Cocody-Abidjan, Thèse Unique de Doctorat ès Sciences, 2004.

Published

2024-09-25

Issue

Section

Articles

How to Cite

TEMPORAL LINEAR STABILITY OF A CONVECTIVE ATMOSPHERIC PARCEL WITH AN AFFINE VELOCITY FIELD. (2024). Far East Journal of Dynamical Systems, 37(2), 179-204. https://doi.org/10.17654/0972111824008

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