航空学报 > 1988, Vol. 9 Issue (1): 11-18

翼-身组合体跨音速守恒型全位势流AF2高效算法的应用

黄明恪   

  1. 南京航空学院
  • 收稿日期:1986-12-06 修回日期:1900-01-01 出版日期:1988-01-25 发布日期:1988-01-25

APPLICATION OF EFFICIENT ITERATION SCHEME AF2 TO COMPUTATIONS OF TRANSONIC FULL-POTENTIAL FLOWS OVER WING-BODY CONBINATIONS

Huang Mingke   

  1. Nanjing Aeronautical Institute
  • Received:1986-12-06 Revised:1900-01-01 Online:1988-01-25 Published:1988-01-25

摘要: 本文用Joukowski交换将圆截面机身的每一横截面逐一转绘为垂直切缝,因而将翼-身组合体转绘为某单独机翼。我们用作者采用过的数值保角转绘法对转换的单独机翼生成O型贴体坐标网格,然后用逆转绘构造翼-身组合体绕流的O型贴体坐标网格。跨音速计算采用守恒型金位势方程,精确边界条件和AF2高效有限差分迭代算法。本文指出,只需少量修改,就可将单独翼分析程序扩展为可同时适用于翼-身组合体。本文考虑的组合体其机身为有限或无限长,圆形截面,机翼前后机身轴线允许弯曲;机翼有任意平面形状,但翼尖弦长不能太短。

Abstract: The flow region around the wing-body combination is transformed by locad Jonkowski transformation into the one around a wing alone for the case with the body of circular cross section. The body-fitted "O" mesh around the transformed wing alone is constructed for each grid section by numerical conformal mapping, and is then, transformed back to form 3 -D bodyfitted mesh around the given wing-body combination. The transonic flow computation is performed by the use of conservative full-potential equation with exact boundary conditions and the efficient iteration scheme in finite difference method AF2. It is shown that only a few changes needed to expand the computer program for wing alone to cover wing-body combinations. The presented method is limited to the combinations which consist of the bodies of finite or infinite lengths with curved axes and circular cross sections, and the wing of arbitrary planform with finite wing tip. The computations for the combination with highly tapered and swept wing, nevertheless, is still a difficult problem.