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Triple Solutions and Stability Analysis of Micropolar Fluid Flow on an Exponentially Shrinking Surface

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Date

2020

Journal Title

Journal ISSN

Volume Title

Publisher

Mdpi

Open Access Color

GOLD

Green Open Access

No

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Top 10%
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Average
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Top 10%

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Abstract

In this article, we reconsidered the problem of Aurangzaib et al., and reproduced the results for triple solutions. The system of governing equations has been transformed into the system of non-linear ordinary differential equations (ODEs) by using exponential similarity transformation. The system of ODEs is reduced to initial value problems (IVPs) by employing the shooting method before solving IVPs by the Runge Kutta method. The results reveal that there are ranges of multiple solutions, triple solutions, and a single solution. However, Aurangzaib et al., only found dual solutions. The effect of the micropolar parameter, suction parameter, and Prandtl number on velocity, angular velocity, and temperature profiles have been taken into account. Stability analysis of triple solutions is performed and found that a physically possible stable solution is the first one, while all leftover solutions are not stable and cannot be experimentally seen.

Description

Nisar, Prof. Kottakkaran Sooppy/0000-0001-5769-4320; Khan, Ilyas/0000-0002-2056-9371

Keywords

Similarity Solution, Triple Solutions, Stability Analysis, Shooting Method, Three-Stage Lobatto Iii-A Formula, Crystallography, similarity solution; triple solutions; stability analysis; shooting method; three-stage Lobatto III-A formula, similarity solution, triple solutions, QA75 Electronic computers. Computer science, shooting method, stability analysis, three-stage Lobatto III-A formula, QD901-999

Fields of Science

02 engineering and technology, 01 natural sciences, 0203 mechanical engineering, 0103 physical sciences

Citation

Lund, Liaquat Ali...et al. (2020). "Triple Solutions and Stability Analysis of Micropolar Fluid Flow on an Exponentially Shrinking Surface", Crystals, Vol. 10, No. 4.

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
13

Source

Crystals

Volume

10

Issue

4

Start Page

283

End Page

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CrossRef : 13

Scopus : 12

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Mendeley Readers : 16

SCOPUS™ Citations

13

checked on Feb 24, 2026

Web of Science™ Citations

13

checked on Feb 24, 2026

Page Views

3

checked on Feb 24, 2026

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