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Mixed convection flow over a vertical power-law stretching sheet
Published in
2010
Volume: 20
   
Issue: 4
Pages: 445 - 458
Abstract
Purpose: The purpose of this paper is to consider steady two-dimensional mixed convection flow along a vertical semi-infinite power-law stretching sheet. The velocity and temperature of the sheet are assumed to vary in a power-law form. Design/methodology/approach: The problem is formulated in terms of non-similar equations. These equations are solved numerically by an efficient implicit, iterative, finite-difference method in combination with a quasi-linearization technique. Findings: It was found that the skin-friction coefficient increased with the ratio of free-stream velocity to the composite reference velocity and the buoyancy parameter while it decreased with exponent parameter. The heat transfer rate increased with the Prandtl number, buoyancy parameter and the exponent parameter. Practical implications: A very useful source of information for researchers on the subject of convective flow over stretching sheets. Originality/value: This paper illustrates mixed convective flow over a power-law stretched surface with variable wall temperature. © Emerald Group Publishing Limited.
About the journal
JournalInternational Journal of Numerical Methods for Heat and Fluid Flow
ISSN09615539
Open AccessYes
Concepts (26)
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    BUOYANCY PARAMETERS
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    Convection
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    CONVECTION FLOW
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    CONVECTIVE FLOW
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    DESIGN/METHODOLOGY/APPROACH
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    Free-stream velocity
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    Heat transfer rate
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    MIXED CONVECTION FLOW
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    MIXED CONVECTIVE FLOW
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    Power-law
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    QUASI-LINEARIZATION
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    REFERENCE VELOCITY
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    SEMI-INFINITE
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    SKIN-FRICTION COEFFICIENT
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    STRETCHED SURFACES
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    STRETCHING SHEET
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    VARIABLE WALL TEMPERATURE
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    Buoyancy
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    Friction
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    Heat exchangers
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    Heat transfer
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    Linearization
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    Mixed convection
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    Tribology
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    Two dimensional
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    PAPER SHEETING