Open Journal of Fluid Dynamics

Open Journal of Fluid Dynamics

ISSN Print: 2165-3852
ISSN Online: 2165-3860
www.scirp.org/journal/ojfd
E-mail: ojfd@scirp.org
"Combined Effects of Centrifugal and Coriolis Instability of the Flow through a Rotating Curved Duct with Rectangular Cross Section"
written by Rabindra Nath Mondal, Samir Chandra Ray, Shinichiro Yanase,
published by Open Journal of Fluid Dynamics, Vol.4 No.1, 2014
has been cited by the following article(s):
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[2] A computational study on fluid flow and heat transfer through a rotating curved duct with rectangular cross section
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[3] Pressure-Induced Instability Characteristics of a Transient Flow and Energy Distribution through a Loosely Bent Square Duct
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[4] Taylor-Heat Flux Effect on Fluid Flow and Heat Transfer in a Curved Rectangular Duct with Rotation
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[5] Mathematical Modelling of Engineering Problems
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[6] Numerical Investigation on the Transition of Fluid Flow Characteristics Through a Rotating Curved Duct
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[7] Physics of bifurcation of the flow and heat transfer through a curved duct with natural and forced convection
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[8] Hydrothermal behavior of transient fluid flow and heat transfer through a rotating curved rectangular duct with natural and forced convection
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[9] Pressure-driven flow instability with convective heat transfer through a rotating curved rectangular duct with differentially heated top and bottom walls
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[10] Pressure-driven Flow Instability with Convective Heat Transfer through a Rotating Curved Square Duct with Strong Curvature
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[11] Dean-Taylor Flow with Convective Heat Transfer through a Coiled Duct
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[12] Numerical study of Unsteady Fluid Flow and Heat Transfer Through a Rotating Curved Rectangular Channel
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[13] Dynamics of Flexible Body Negotiating a Curve
Journal of Computational and Nonlinear Dynamics, 2016
[14] CENTRIFUGAL FORCE OF FLEXIBLE BODY IN CURVE NEGOTIATION
2016
[15] Role of centrifugal force on solid-liquid two-phase flow through rotating channel
2016
[16] Unsteady Features of Laminar Viscous Incompressible Flow and Temperature Dissemination through a Rotating Bent Rectangular Channel: The Case of …
[17] Numerical Analysis of Steady and Unsteady Fluid Flow and Energy Distribution through a Curved Square Geometry Driven by Variable Pressure Gradients
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