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Prediction of hypersonic boundary layer transition on sharp wedge flow considering variable specific heat

Prediction of hypersonic boundary layer transition on sharp wedge flow considering variable specific heat
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摘要 When the air temperature reaches 600 K or higher, vibration is excited. The specific heat is not a constant but a function of temperature. Under this condition, the transition position of hypersonic sharp wedge boundary layer is predicted by using the improved eN method considering variable specific heat. The transition positions with different Mach numbers of oncoming flow, half wedge angles, and wall conditions are computed condition, the nearer to the Mach number The results show that for the same oncoming flow condition and wall transition positions of hypersonic sharp wedge boundary layer move much leading edge than those of the flat plate. The greater the oncoming flow the closer the transition position to the leading edge. When the air temperature reaches 600 K or higher, vibration is excited. The specific heat is not a constant but a function of temperature. Under this condition, the transition position of hypersonic sharp wedge boundary layer is predicted by using the improved eN method considering variable specific heat. The transition positions with different Mach numbers of oncoming flow, half wedge angles, and wall conditions are computed condition, the nearer to the Mach number The results show that for the same oncoming flow condition and wall transition positions of hypersonic sharp wedge boundary layer move much leading edge than those of the flat plate. The greater the oncoming flow the closer the transition position to the leading edge.
作者 毛旭 曹伟
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2014年第2期143-154,共12页 应用数学和力学(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.11172203 and91216111) the National Basic Research Program of China(No.2009CB724103)
关键词 hypersonic flow wedge boundary layer variable specific heat transitionprediction improved eN method hypersonic flow, wedge boundary layer, variable specific heat, transitionprediction, improved eN method
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