1986
DOI: 10.1007/bf00915315
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Heat exchange at the lateral surface of a blunt cone during absorption of the entropy layer by the laminar and turbulent boundary layer

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Cited by 2 publications
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“…The first of these is located The results of the calculations made in [4] were presented in that paper as St*(s*), where St* is the modified Stanton number and s* is the modified distance from the stagnation point, measured in fractions of the distance between the stagnation point and the entropy layer absorption point. In this modification the Reynolds number and the cone half-angle appear explicitly, while the Mach number and the temperature factor enter implicitly, by way of the velocity and density values at the outer edge of the boundary layer.…”
Section: Discussion Of Resultsmentioning
confidence: 99%
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“…The first of these is located The results of the calculations made in [4] were presented in that paper as St*(s*), where St* is the modified Stanton number and s* is the modified distance from the stagnation point, measured in fractions of the distance between the stagnation point and the entropy layer absorption point. In this modification the Reynolds number and the cone half-angle appear explicitly, while the Mach number and the temperature factor enter implicitly, by way of the velocity and density values at the outer edge of the boundary layer.…”
Section: Discussion Of Resultsmentioning
confidence: 99%
“…All these approaches enable the entropy layer absorption to be taken into account without solving a set of equations more intricate than that of boundary layer theory. All these approaches need theoretical or experimental verification.The similitude criteria for turbulent boundary layers on blunt-nosed cones were analyzed in [4,6]. In [4] the similitude parameters determining the heat transfer to the cone surface were established for the entropy layer absorption regime over the following ranges of the governing parameters: cone half-angle 0k= 10 deg, Reynolds number Re~ =1.0-105--3.1-105, Mach number Mo.…”
mentioning
confidence: 99%
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