D. W. Kang's research while affiliated with Gyeongsang National University and other places

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Publications (1)


Fig. 1 Mission profile of a UAV.  
Table 1 Nozzle geometry and inlet conditions.
Fig. 2 Various nozzle shapes.  
Table 2 Comparison of exit/wall temperature and thrust for various nozzle configurations.
Fig. 3 Numerical boundary conditions.  

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Analysis of Plume Infrared Signatures of S-Shaped Nozzle Configurations of Aerial Vehicle
  • Article
  • Full-text available

May 2016

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5,922 Reads

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48 Citations

Journal of Aircraft

C. H. An

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D. W. Kang

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S. T. Baek

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[...]

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S. M. Choi

The infrared susceptibility of the propulsion system of an aircraft is significantly affected by nozzle shapes and atmospheric conditions. To examine the effects of nozzle shapes and atmospheric conditions, various nozzle shapes were selected by considering a representative low-observable unmanned aerial vehicle and its propulsion system. Then, using the density-based Navier–Stokes–Fourier computational-fluid-dynamics code, the thermal flowfield and the distribution of chemical species within a plume, which are essential for the analysis of infrared signatures, were calculated. From the analysis of plume infrared signatures for noncircular nozzles, it was found that infrared signature levels were reduced significantly in the axial direction. However, relatively higher signature levels were observed on the left and right sides and below the nozzle due to increase in the aspect ratio of the nozzle outlet as well as curvature, which led to a wider distribution of the plumes along a downward slope. Further, to take into account atmospheric effects, the atmospheric transmissivity according to changes of season and observational distance was analyzed in detail. Finally, the lock-on range was calculated for different nozzle configurations and was compared with the basic circular shape.

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Citations (1)


... Air Force Research Laboratory presents the three-stream ACE configuration in the project of Adaptive Versatile Engine Technology whose the multi-stream supersonic nozzle has the multiple advantages over the conventional nozzle [4]. The stealth performance heightens utilizing the serpentine configuration [5]. The jet noise is signally reduced by shielding the high-speed main flow from the low-speed third flow [6]. ...

Reference:

Influences of nozzle pressure ratio on flow characteristics of serpentine multi-stream supersonic nozzle
Analysis of Plume Infrared Signatures of S-Shaped Nozzle Configurations of Aerial Vehicle

Journal of Aircraft