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  • 1
    Publication Date: 1983-02-01
    Description: Laser-Doppler measurements of velocity distribution and reattachment length are reported downstream of a single backward-facing step mounted in a two-dimensional channel. Results are presented for laminar, transitional and turbulent flow of air in a Reynolds-number range of 70 〈 Re 〈 8000. The experimental results show that the various flow regimes are characterized by typical variations of the separation length with Reynolds number. The reported laser-Doppler measurements do not only yield the expected primary zone of recirculating flow attached to the backward-facing step but also show additional regions of flow separation downstream of the step and on both sides of the channel test section. These additional separation regions have not been previously reported in the literature. Although the high aspect ratio of the test section (1:36) ensured that the oncoming flow was fully developed and two-dimensional, the experiments showed that the flow downstream of the step only remained two-dimensional at low and high Reynolds numbers. The present study also included numerical predictions of backward-facing step flow. The two-dimensional steady differential equations for conservation of mass and momentum were solved. Results are reported and are compared with experiments for those Reynolds numbers for which the flow maintained its two-dimensionality in the experiments. Under these circumstances, good agreement between experimental and numerical results is obtained. © 1983, Cambridge University Press. All rights reserved.
    Print ISSN: 0022-1120
    Electronic ISSN: 1469-7645
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
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  • 2
    Publication Date: 2019-06-27
    Description: Lateral heat conduction and radiation along two parallel long plates separated by nonabsorbing dielectric with refractive index of unity
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: ; 81, 82. (
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  • 3
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    In:  CASI
    Publication Date: 2019-06-27
    Description: The rate of heat transfer to the heat shield of a Jupiter probe has been estimated to be one order of magnitude higher than any previously experienced in an outer space exploration program. More than one-third of this heat load is due to an emission of continuum radiation from atoms and ions. The existing computer code for calculating the continuum contribution to the total load utilizes a modified version of Biberman's approximate method. The continuum radiation absorption cross sections of a C - H - O - N ablation system were examined in detail. The present computer code was evaluated and updated by being compared with available exact and approximate calculations and correlations of experimental data. A detailed calculation procedure, which can be applied to other atomic species, is presented. The approximate correlations can be made to agree with the available exact and experimental data.
    Keywords: ATOMIC AND MOLECULAR PHYSICS
    Type: NASA-CR-158536
    Format: application/pdf
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  • 4
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    In:  Other Sources
    Publication Date: 2019-07-13
    Description: A method is proposed for predicting the translational component of the thermal conductivity of partially ionized gas mixtures. It is approximate but simple in form and offers a significant improvement over commonly utilized approximations. It does not require large computer run times nor storage, thus it is suitable for use with complex flow fields and heat transfer calculations. Results for gas mixtures which are representative of the atmosphere of Jupiter, Earth, and Venus are presented and they compare favorably with results from detailed kinetic theory analyses.
    Keywords: THERMODYNAMICS AND STATISTICAL PHYSICS
    Type: AIAA PAPER 81-1174 , Thermophysics Conference; Jun 23, 1981 - Jun 25, 1981; Palo Alto, CA
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  • 5
    Publication Date: 2019-07-13
    Description: An approximate method is proposed for predicting the viscosity of partially ionized gas mixtures. This technique expresses the viscosity of a mixture in terms of the viscosities of the individual pure components, is simple in form, and does not require large computer run times or storage. Thus, the technique is suitable for use with complex flowfields and heat-transfer calculations. Results for gas mixtures which are representative of the atmospheres of Jupiter, Earth, and Venus, are presented and it is shown that the results compare favorably with detailed kinetic-theory analyses.
    Keywords: THERMODYNAMICS AND STATISTICAL PHYSICS
    Type: AIAA PAPER 80-1495 , Thermophysics Conference; Jul 14, 1980 - Jul 16, 1980; Snowmass, CO
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  • 6
    Publication Date: 2019-07-13
    Description: Thermal conductivity of thin metallic films and wires at cryogenic temperatures, discussing electron transport properties
    Keywords: PHYSICS, GENERAL
    Type: THERMAL CONDUCTIVITY, EIGHTH CONFERENCE, PURDUE U.; Oct 07, 1968 - Oct 10, 1968; WEST LAFAYETTE, IN
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  • 7
    Publication Date: 2019-07-13
    Description: Calorimetric measurements determining total hemispheric emittance of thin gold films as function of temperature, demonstrating film thickness effect
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: AIAA PAPER 70-63 , AMERICAN INST. OF AERONAUTICS AND ASTRONAUTICS, AEROSPACE SCIENCES MEETING, 8TH; Jan 19, 1970 - Jan 21, 1970; NEW YORK, NY
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  • 8
    Publication Date: 2019-07-13
    Description: Thin metallic films thermal radiation properties at cryogenic temperatures, calculating spectral normal emissivity as temperature wavelength and thickness function
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: INTL. HEAT TRANSFER CONFERENCE; Aug 31, 1970 - Sep 05, 1970; VERSAILLES; FRANCE
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  • 9
    Publication Date: 2019-07-13
    Description: Calorimetric measurements determining total hemispheric emittance of thin gold films as function of temperature, demonstrating film thickness effect
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: AIAA PAPER 70-63 , ; ADEMIE DES SCIENCES|AEROSPACE SCIENCES MEETING; Jan 19, 1970 - Jan 21, 1970; NEW YORK, NY
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