2004
DOI: 10.1063/1.1637604
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Direct numerical simulation and analysis of a spatially evolving supersonic turbulent boundary layer at M=2.25

Abstract: A spatially developing supersonic adiabatic flat plate boundary layer flow (at M-infinity=2.25 and Re(theta)approximate to4000) is analyzed by means of direct numerical simulation. The numerical algorithm is based on a mixed weighted essentially nonoscillatory compact-difference method for the three-dimensional Navier-Stokes equations. The main objectives are to assess the validity of Morkovin's hypothesis and Reynolds analogies, and to analyze the controlling mechanisms for turbulence production, dissipation,… Show more

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Cited by 442 publications
(281 citation statements)
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“…However, Liang et al [14] proposed that the SRA is valid for T w /T ∞ =10.03 and Ma ∞ =8 in whole boundary layer. Similar results have been reported for Mach 2.25 [3] and 5 [9].…”
Section:   U T Rsupporting
confidence: 79%
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“…However, Liang et al [14] proposed that the SRA is valid for T w /T ∞ =10.03 and Ma ∞ =8 in whole boundary layer. Similar results have been reported for Mach 2.25 [3] and 5 [9].…”
Section:   U T Rsupporting
confidence: 79%
“…(9) R , but also indicate that the correlation of u″ and v″ is not considered strong, as well as weak correlation between v″ and T″. Such results are similar [3] for the lower Mach number case. When y + <50, the predicted results by eqs.…”
Section:   U T Rsupporting
confidence: 75%
See 3 more Smart Citations