• DocumentCode
    118894
  • Title

    Static longitudinal stability of a hybrid airship

  • Author

    Anwar-ul-Haque ; Asrar, Waqar ; Omar, A.A. ; Suleiman, Erwin ; Ali, J.M.

  • Author_Institution
    Dept. of Mech. Eng., Int. Islamic Univ. of Malaysia (IIUM), Kuala Lumpur, Malaysia
  • fYear
    2014
  • fDate
    14-18 Jan. 2014
  • Firstpage
    343
  • Lastpage
    348
  • Abstract
    Numerical simulations play a dominant role in design of experiments to get first hand knowledge about the aerodynamic behavior before the beginning of wind tunnel testing. In the present work, the static longitudinal stability characteristics of a single lobe winged-hybrid airship are investigated with two different empennages. Based on the previous computational and experimental work, numerical simulations are carried out by generating unstructured grids on scaled down geometry having `+ Type´ and a `inverted Y type´ empennage and by using SST turbulence model for specified flow conditions. The shape of the hull is a blunted spheroid-ellipsoid. The empennage arrangement is the only geometric dissimilarity in these two cases. Results obtained are first validated with the available experimental data. Numerical results show that for such low fineness ratio hull configurations, changing the tail configuration from `+ Type´ to `Inverted Y Type´ empennage has actually decreased the static stability at low speed. These initial numerical results will be useful for any future work related to the design of experiments with `Inverted Y Type´ empennage.
  • Keywords
    aircraft; design of experiments; numerical analysis; shapes (structures); turbulence; wind tunnels; + type empennage; SST turbulence model; aerodynamic behavior; blunted spheroid-ellipsoid; design of experiments; empennage arrangement; fineness ratio hull configurations; geometric dissimilarity; hull shape; inverted Y type empennage; scaled down geometry; single lobe winged-hybrid airship; static longitudinal stability characteristics; tail configuration; unstructured grids; wind tunnel testing; Aerodynamics; Atmospheric modeling; Numerical models; Numerical simulation; Numerical stability; Power system stability; Stability analysis;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Applied Sciences and Technology (IBCAST), 2014 11th International Bhurban Conference on
  • Conference_Location
    Islamabad
  • Type

    conf

  • DOI
    10.1109/IBCAST.2014.6778167
  • Filename
    6778167