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http://dx.doi.org/10.3795/KSME-B.2016.40.12.785

Numerical Study on the Effect of Non-Equilibrium Condensation on Drag Divergence Mach Number in a Transonic Moist Air Flow  

Choi, Seung Min (Institute of Green Car Parts, GyeongBuk Technopark)
Kang, Hui Bo (School of Mechanical Engineering, Kyungpook Nat'l Univ.)
Kwon, Young Doo (School of Mechanical Engineering, Kyungpook Nat'l Univ.)
Kwon, Soon Bum (School of Mechanical Engineering, Kyungpook Nat'l Univ.)
Publication Information
Transactions of the Korean Society of Mechanical Engineers B / v.40, no.12, 2016 , pp. 785-792 More about this Journal
Abstract
In the present study, the effects of non-equilibrium condensation on the drag divergence Mach number with the angle of attack in a transonic 2D moist air flow of NACA0012 are investigated using the TVD finite difference scheme. For the same ${\alpha}$, the maximum upstream Mach number of the shock wave, Mmax, and the size of supersonic bubble decrease with the increase in ${\Phi}_0$. For the same $M_{\infty}$, ${\Phi}_0$, and $T_0$, the length of the non-equilibrium condensation zone ${\Delta}_z$ decreases with increasing ${\Phi}_0$. On the other hand, because of the attenuating effect of non-equilibrium condensation on wave drag, which is related to the interaction between the shock wave and the boundary layer, the drag coefficient $C_D$ decreases with an increase in ${\Phi}_0$ for the same $M_{\infty}$ and ${\alpha}$. For the same ${\alpha}$, $M_D$ increases with increasing ${\Phi}_0$, while $M_D$ decreases with an increase in ${\alpha}$.
Keywords
Transonic Moist Air Flow; Drag Divergence Mach Number; TVD Scheme; Non-Equilibrium Condensation; Wave Drag; Iso-Mach Number;
Citations & Related Records
Times Cited By KSCI : 5  (Citation Analysis)
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