dc.contributor.author |
Unnikrishnan, Akash |
|
dc.contributor.author |
Narayanan, Vinod |
|
dc.contributor.author |
Vanka, Surya Pratap |
|
dc.coverage.spatial |
United States of America |
|
dc.date.accessioned |
2024-04-25T14:47:03Z |
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dc.date.available |
2024-04-25T14:47:03Z |
|
dc.date.issued |
2024-04 |
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dc.identifier.citation |
Unnikrishnan, Akash; Narayanan, Vinod and Vanka, Surya Pratap, "High-order meshless global stability analysis of Taylor-Couette flows in complex domains", arXiv, Cornell University Library, DOI: arXiv:2404.11517, Apr. 2024. |
|
dc.identifier.uri |
http://arxiv.org/abs/2404.11517 |
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dc.identifier.uri |
https://repository.iitgn.ac.in/handle/123456789/9983 |
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dc.description.abstract |
Recently, meshless methods have become popular in numerically solving partial differential equations and have been employed to solve equations governing fluid flows, heat transfer, and species transport. In the present study, a numerical solver is developed employing the meshless framework to efficiently compute the hydrodynamic stability of fluid flows in complex geometries. The developed method is tested on two cases of Taylor-Couette flows. The concentric case represents the parallel flow assumption incorporated in the Orr-Sommerfeld model and the eccentric Taylor-Couette flow incorporates a non-parallel base flow with separation bubbles. The method was validated against earlier works by Marcus [1], Oikawa et al. [2], Leclercq et al. [3], and Mittal et al. [4]. The results for the two cases and the effectiveness of the method are discussed in detail. The method is then applied to Taylor-Couette flow in an elliptical enclosure and the stability of the flow is investigated. |
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dc.description.statementofresponsibility |
by Akash Unnikrishnan, Vinod Narayanan and Surya Pratap Vanka |
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dc.language.iso |
en_US |
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dc.publisher |
Cornell University Library |
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dc.title |
High-order meshless global stability analysis of Taylor-Couette flows in complex domains |
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dc.type |
Article |
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dc.relation.journal |
arXiv |
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