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- Title
Stability analysis of nonlinear convective boundary layer flow on a shrinking surface in the presence of viscous dissipation.
- Authors
Rehman, Ali; Zeb, Muhammad; Waheed, Asif; Inc, Mustafa; Yagoob, Budur; Jan, Rashid
- Abstract
This study investigates analytically the stability analysis of a nonlinear convective boundary layer (BL) flow of the nanofluids GO-EG and GO-W on a shrinking surface in the presence of a magnetic field and viscous dissipation. We provide a second-order nonlinear ordinary differential equation (NODE) for temperature distribution (TD) and a third-order NODE for velocity profile (VP) coupling based on the thermophysical characteristics of the base fluid and nanofluid as well as similarity transformations (STs) in the fundamental governing equations of momentum and energy. The analytical method HAM is used to answer the equations that have been gathered. In many different industries, such as manufacturing, automotive, microelectronics, and defense, cooling of various types of equipment and devices has very important challenges. To fulfill the demands of the engineering and industrial industries, it is hoped that this issue would significantly improve the heat transformation ratio.
- Subjects
NONLINEAR analysis; ORDINARY differential equations; SIMILARITY transformations; NONLINEAR differential equations; CONVECTIVE boundary layer (Meteorology); TEMPERATURE distribution; LYAPUNOV stability; STAGNATION flow
- Publication
Modern Physics Letters B, 2024, Vol 38, Issue 23, p1
- ISSN
0217-9849
- Publication type
Article
- DOI
10.1142/S0217984924501653