Taylor-Couette flow and heat transfer in an elliptical enclosure with a rotating inner cylinder

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dc.contributor.author Unnikrishnan, Akash
dc.contributor.author Narayanan, Vinod
dc.contributor.author Chamorro, Leonardo P.
dc.contributor.author Vanka, Surya Pratap
dc.coverage.spatial United States of America
dc.date.accessioned 2024-03-14T13:21:37Z
dc.date.available 2024-03-14T13:21:37Z
dc.date.issued 2024-03
dc.identifier.citation Unnikrishnan, Akash; Narayanan, Vinod; Chamorro, Leonardo P.; Vanka, Surya Pratap, "Taylor-Couette flow and heat transfer in an elliptical enclosure with a rotating inner cylinder", Physics of Fluids, DOI: 10.1063/5.0190826, vol. 36, no. 3, Mar. 2024.
dc.identifier.issn 1070-6631
dc.identifier.issn 1089-7666
dc.identifier.uri https://doi.org/10.1063/5.0190826
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/9851
dc.description.abstract We numerically investigate Taylor–Couette flows within a system consisting of an elliptical outer cylinder and a rotating inner circular cylinder, with particular emphasis on the behavior of Taylor cells. The three-dimensional unsteady Navier–Stokes equations are solved under the assumption of axial periodicity. Also, a scalar transport equation is solved for the heat transfer. Our methodology employs a Fourier-spectral meshless discretization technique, which interpolates variables at scattered points using polyharmonic splines and appended polynomials. A pressure-projection algorithm achieves the time advancement of the flow equations. We present findings for an elliptical enclosure with an aspect ratio of two, examining a range of Reynolds numbers (Re) from subcritical to 300. Our analysis includes streamlines, axial velocity contours, pressure, vorticity, and temperature profiles. The results indicate that the flow remains steady up to Re ≈ 300 before transitioning to an unsteady state at Re ≈ 350.
dc.description.statementofresponsibility by Akash Unnikrishnan, Vinod Narayanan, Leonardo P. Chamorro and Surya Pratap Vanka
dc.format.extent vol. 36, no. 3
dc.language.iso en_US
dc.publisher American Institute of Physics
dc.title Taylor-Couette flow and heat transfer in an elliptical enclosure with a rotating inner cylinder
dc.type Article
dc.relation.journal Physics of Fluids


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