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Original Articles

Some effects of boundary conditions and fluid properties on vacillation in thermally driven rotating flow in an annulus

Pages 1-23 | Received 21 Oct 1980, Accepted 16 Feb 1981, Published online: 18 Aug 2006

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Read on this site (2)

Huei-Iin Lu, TimothyL. Miller & KarenA. Butler. (1994) A numerical study of wavenumber selection in the baroclinic annulus flow system. Geophysical & Astrophysical Fluid Dynamics 75:1, pages 1-19.
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Phillip Hignett. (1985) Characteristics of amplitude vacillation in a differentially heated rotating fluid annulus. Geophysical & Astrophysical Fluid Dynamics 31:3-4, pages 247-281.
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Articles from other publishers (9)

Shivam Swarnakar, Amitabh Bhattacharya & Sridhar Balasubramanian. (2023) Numerical study of rotating convection with bi-directional temperature gradients. Physics of Fluids 35:5.
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Anthony Randriamampianina & Emilia Crespo del Arco. (2015) Inertia–gravity waves in a liquid-filled, differentially heated, rotating annulus. Journal of Fluid Mechanics 782, pages 144-177.
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Wolf‐Gerrit Früh. 2014. Modeling Atmospheric and Oceanic Flows. Modeling Atmospheric and Oceanic Flows 61 81 .
Anthony Randriamampianina & Emilia Crespo del Arco. 2014. Modeling Atmospheric and Oceanic Flows. Modeling Atmospheric and Oceanic Flows 297 313 .
Marcello Lappa. 2012. Rotating Thermal Flows in Natural and Industrial Processes. Rotating Thermal Flows in Natural and Industrial Processes 473 509 .
Peter L. Read, Pierre Maubert, Anthony Randriamampianina & Wolf-Gerrit Früh. (2008) Direct numerical simulation of transitions towards structural vacillation in an air-filled, rotating, baroclinic annulus. Physics of Fluids 20:4.
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Huei-lin Lu & Timothy L. Miller. (1998) Characteristics of annulus baroclinic flow structure during amplitude vacillation. Dynamics of Atmospheres and Oceans 27:1-4, pages 485-503.
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W. -G. Früh & P. L. Read. (1997) Wave interactions and the transition to chaos of baroclinic waves in a thermally driven rotating annulus. Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 355:1722, pages 101-153.
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I. M. Moroz & J. Brindley. (2015) Nonlinear Amplitude Evolution of Baroclinic Wave Trains and Wave Packets. Studies in Applied Mathematics 70:1, pages 21-61.
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