سیویلیکا را در شبکه های اجتماعی دنبال نمایید.

Freestream Temperature Effects on the Receptivity of Hypersonic Boundary Layer Induced by Finite-Amplitude Pulse Entropy Waves

Publish Year: 1402
Type: Journal paper
Language: English
View: 152

This Paper With 15 Page And PDF Format Ready To Download

Export:

Link to this Paper:

Document National Code:

JR_JAFM-16-12_007

Index date: 25 October 2023

Freestream Temperature Effects on the Receptivity of Hypersonic Boundary Layer Induced by Finite-Amplitude Pulse Entropy Waves abstract

The unsteady hypersonic flow under finite amplitude pulse entropy perturbation at different freestream temperatures was calculated by direct numerical simulation. The flow response characteristics under the perturbation of entropy waves in freestreaming are analyzed. The temperature effect of freestreaming is studied based on the sensitivity of the boundary layer caused by pulse entropy perturbation. The results show that the higher freestream temperature promotes the first growth of the above third-order modes after leaving the head region, and strongly inhibits the first attenuation. The influence of the freestream temperature on the evolution of the induced disturbance wave is more significant than that on the development of the main flow disturbance waves. Low freestream temperature can suppress the attenuation of the modes below the second order. As the disturbance wave evolves downstream, the frequency band of the finite frequency disturbance wave gradually narrows, and the frequency band narrows faster when the temperature of freestreaming is low than when the temperature of freestreaming is high.

Freestream Temperature Effects on the Receptivity of Hypersonic Boundary Layer Induced by Finite-Amplitude Pulse Entropy Waves Keywords:

Freestream Temperature Effects on the Receptivity of Hypersonic Boundary Layer Induced by Finite-Amplitude Pulse Entropy Waves authors

X. Tang

School of Materials Science and Engineering, Yantai Nanshan University, Yantai, ۲۶۵۷۱۳, China

D. Chen

Beijing Spacecrafts, China Academy of Space Technology, Beijing ۱۰۰۰۹۴, China

L. Liu

Beijing Spacecrafts, China Academy of Space Technology, Beijing ۱۰۰۰۹۴, China

P. Zhu

School of Materials Science and Engineering, Yantai Nanshan University, Yantai, ۲۶۵۷۱۳, China

L. Xin

Beijing Spacecrafts, China Academy of Space Technology, Beijing ۱۰۰۰۹۴, China

M. Shi

School of Civil Engineering, Inner Mongolia University of Science and Technology, Baotou, ۰۱۴۰۱۰, China

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
Balakumar, P. (۲۰۱۵). Receptivity of hypersonic boundary layers to acoustic ...
Cerminara, A., & Sandham, N. D. (۲۰۱۷). Acoustic leading-edge receptivity ...
Huang, Y., & Zhong, X. (۲۰۱۴). Numerical study of hypersonic ...
Laderman, A. J. (۱۹۷۶). New measurements of turbulent shear stresses ...
Maddalon, D. V. & Jr, R. D. W. (۲۰۱۵) Weinstein ...
Qin, F., & Wu, X. (۲۰۱۶). Response and receptivity of ...
Wagner, A., Schülein, E., Petervari, R., Hannemann, K., Ali, S. ...
نمایش کامل مراجع