Stability of Two Self-Gravitating Magneto -Dynamic Oscillating Fluids Interface

Samia S. Elazab; zeinab mohamed ibrahim ismail; Gehad H. Zidan; Alfaisal A. Hasan;

Abstract


A compound on miscible fluid jet's magneto hydrodynamics (MHD) stability is
discussed. For that model, which incorporates fluid inertia, capillary forces, and
electromagnetic forces, a general eigenvalue relation is derived. Small axisymmetric
disturbances are the only ones that cause the model to be capillary unstable, and the rest of
the disturbances are stable. The attractive fields inside and outside to the gas-mantle fly
have consistently a settling impact. The radii proportion of the concentric planes assumes a
significant part in the (unsteadiness) security states and are (diminishing) expanding with
expanding attractive field power as the outside span is a lot bigger than the inside range;
under certain limitations of the radii proportion or more a specific worth of the attractive
field the slim precariousness is overlooked and totally smothered and afterward
dependability sets in. The last option result is checked logically and affirmed
mathematically for the situation where the barrel shaped surface of the external stream is
sited at endlessness.


Other data

Title Stability of Two Self-Gravitating Magneto -Dynamic Oscillating Fluids Interface
Authors Samia S. Elazab; zeinab mohamed ibrahim ismail ; Gehad H. Zidan; Alfaisal A. Hasan
Keywords Magnetic Field, Oscillating and Self-Gravitating, Double-fluid.
Issue Date 2023
Publisher MSA engineering journal
Volume 2
Issue 3
Start page 219
End page 233
Description 
stability of fluid
DOI 10.21608/msaeng.2023.310080

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