Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow

Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow
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Total Pages : 28
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ISBN-10 : UIUC:30112106877555
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Book Synopsis Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow by : Aubrey M. Cary

Download or read book Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow written by Aubrey M. Cary and published by . This book was released on 1970 with total page 28 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mathematical analysis of Reynolds analogy for turbulent heat transfer, skin friction, and boundary layer flow in adiabatic conditions.

Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow Related Books

Summary of Available Information on Reynolds Analogy for Zero-pressure-gradient, Compressible, Turbulent-boundary-layer Flow
Language: en
Pages: 28
Authors: Aubrey M. Cary
Categories: Reynolds analogy
Type: BOOK - Published: 1970 - Publisher:

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Mathematical analysis of Reynolds analogy for turbulent heat transfer, skin friction, and boundary layer flow in adiabatic conditions.
NASA Technical Note
Language: en
Pages: 784
Authors:
Categories:
Type: BOOK - Published: 1973 - Publisher:

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Turbulent-boundary-layer Heat-transfer and Transition Measurements with Surface Cooling at Mach 6
Language: en
Pages: 58
Authors: Aubrey M. Cary
Categories: Heat
Type: BOOK - Published: 1970 - Publisher:

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NASA Technical Paper
Language: en
Pages: 56
Authors:
Categories: Science
Type: BOOK - Published: 1980 - Publisher:

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Measurements of a Mach 4.9 Zero-pressure-gradient Turbulent Boundary Layer with Heat Yransfer
Language: en
Pages: 128
Authors: Robert L. P. Voisinet
Categories: Heat
Type: BOOK - Published: 1972 - Publisher:

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The results of a detailed experimental investigation of the compressible turbulent boundary layer in a zero-pressure-gradient flow are presented for zero, moder