Experimental Heat Transfer to Blunt Axisymmetric Bodies Near the Limit of Continuum Flow

Experimental Heat Transfer to Blunt Axisymmetric Bodies Near the Limit of Continuum Flow PDF Author: J. Leith Potter
Publisher:
ISBN:
Category : Air flow
Languages : en
Pages : 26

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Book Description
Measurements of average heat-transfer rates to blunt-nosed, axisymmetric, cold-walled bodies in a low-density, hypervelocity wind tunnel are given. Stream density was such that Reynolds and Knudsen numbers, based on nose radius and conditions immediately behind the bow shock, varied from 5 to 20 and 0.11 to 0.056, respectively. Thus, scaling on the basis of Knudsen number, these conditions may be said to simulate a body of one-foot nose radius at as much as 315,500-ft altitude. Heat-transfer rates are discussed in relation to the flow model successfully used in the past for studies of flows of high Reynolds number. In this context, it was found that measured heat-transfer rates to hemispheres below shock-layer Reynolds numbers of 20 exhibited a decreasing nondimensionalized rate relative to that estimated by methods appropriate to high Reynolds number conditions. This behavior is in accord with various applicable theories. Rates for the flat-faced bodies showed no tendency to decrease, and they were somewhat higher than predicted by theories for high Reynolds numbers.

Experimental Heat Transfer to Blunt Axisymmetric Bodies Near the Limit of Continuum Flow

Experimental Heat Transfer to Blunt Axisymmetric Bodies Near the Limit of Continuum Flow PDF Author: J. Leith Potter
Publisher:
ISBN:
Category : Air flow
Languages : en
Pages : 26

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Book Description
Measurements of average heat-transfer rates to blunt-nosed, axisymmetric, cold-walled bodies in a low-density, hypervelocity wind tunnel are given. Stream density was such that Reynolds and Knudsen numbers, based on nose radius and conditions immediately behind the bow shock, varied from 5 to 20 and 0.11 to 0.056, respectively. Thus, scaling on the basis of Knudsen number, these conditions may be said to simulate a body of one-foot nose radius at as much as 315,500-ft altitude. Heat-transfer rates are discussed in relation to the flow model successfully used in the past for studies of flows of high Reynolds number. In this context, it was found that measured heat-transfer rates to hemispheres below shock-layer Reynolds numbers of 20 exhibited a decreasing nondimensionalized rate relative to that estimated by methods appropriate to high Reynolds number conditions. This behavior is in accord with various applicable theories. Rates for the flat-faced bodies showed no tendency to decrease, and they were somewhat higher than predicted by theories for high Reynolds numbers.

Forebody and Afterbody Solutions of the Navier-Stokes Equations for Supersonic Flow Over Blunt Bodies in a Generalized Orthogonal Coordinate System

Forebody and Afterbody Solutions of the Navier-Stokes Equations for Supersonic Flow Over Blunt Bodies in a Generalized Orthogonal Coordinate System PDF Author: Peter A. Gnoffo
Publisher:
ISBN:
Category : Aerodynamics, Supersonic
Languages : en
Pages : 100

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Effects of Mass Addition on Blunt-body Boundary-layer Transition and Heat Transfer

Effects of Mass Addition on Blunt-body Boundary-layer Transition and Heat Transfer PDF Author: George E. Kaattari
Publisher:
ISBN:
Category : Boundary layer
Languages : en
Pages : 76

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U.S. Government Research Reports

U.S. Government Research Reports PDF Author:
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ISBN:
Category : Science
Languages : en
Pages : 1170

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An Experimental Investigation of Heat Transfer Rates on a Blunt Body in Hypersonic Flow

An Experimental Investigation of Heat Transfer Rates on a Blunt Body in Hypersonic Flow PDF Author: Homer K. Richards
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Category : Aeronautics
Languages : en
Pages : 66

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Technical Publications Announcements with Indexes

Technical Publications Announcements with Indexes PDF Author: United States. National Aeronautics and Space Administration
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Category : Aeronautics
Languages : en
Pages : 1556

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NASA Technical Paper

NASA Technical Paper PDF Author:
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Category : Science
Languages : en
Pages : 100

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Experimental and Numerical Study of Heat Transfer on a Blunt Body in Dusty Hypersonic Flow

Experimental and Numerical Study of Heat Transfer on a Blunt Body in Dusty Hypersonic Flow PDF Author: E. B. Vasilevskii
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Category :
Languages : en
Pages :

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 836

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Applied Mechanics Reviews

Applied Mechanics Reviews PDF Author:
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ISBN:
Category : Mechanics, Applied
Languages : en
Pages : 654

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