首页> 外文期刊>Aerospace science and technology >Mean flow compressibility effects in transonic turbulence modeling
【24h】

Mean flow compressibility effects in transonic turbulence modeling

机译:跨音速湍流模型中的平均流量压缩效应

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The mean flow compressibility effects greatly influence the behavior of turbulent flows, as long as the flow is compressible. The fact is even though Favre average has taken into account the variation of the density, less accurate CFD results are always obtained when the flow is compressible. Thus, many compressibility corrections are made for high Mach number flows. As for the transonic turbulence flow, the mean flow compressibility effects are not mentioned. In this paper, it is demonstrated that the mean flow compressibility effects are not ignorable in transonic flows on some flow features. The mean flow compressibility effects are taken into account by introducing a characteristic turbulence length scale. The key is a new definition of vorticity by the curl of momentum. A compressible von Kármán length scale is introduced to obtain a new turbulence model CKDO (Compressible Kinetic Dependent Only) for complex compressible flows on the basis of the KDO. The only two empirical coefficients in the KDO model are not changed, which were calibrated by a slice of the incompressible flat plate boundary layer flow. Numerical simulations of transonic flows around RAE2822 airfoil, axisymmetric bump pipe and ONERA-M6 wing show that compressibility is non-negligible, and the new length scale definition can improve the prediction accuracies of aerodynamic features, such as the onset locations of shock waves, skin friction and pressure coefficients.
机译:只要流动是可压缩的,平均流动可压缩性效应就会极大地影响湍流的行为。事实是,即使Favre平均法已考虑到密度的变化,但当流体可压缩时,始终会获得不太准确的CFD结果。因此,针对高马赫数流进行了许多可压缩性校正。至于跨音速湍流,没有提及平均流压缩效应。在本文中,证明了在跨音速流中某些流特征上的平均流可压缩性效应是不可忽略的。通过引入特征湍流长度标度考虑了平均流量可压缩性的影响。关键是动量弯曲对涡度的新定义。引入了可压缩的vonKármán长度尺度,以基于KDO为复杂的可压缩流获得新的湍流模型CKDO(仅可压缩动力学相关)。 KDO模型中仅有的两个经验系数没有改变,这是通过一片不可压缩的平板边界层流进行标定的。 RAE2822机翼,轴对称凸点管和ONERA-M6机翼周围的跨音速流动的数值模拟表明,可压缩性不可忽略,并且新的长度比例定义可以提高空气动力学特征的预测精度,例如冲击波,皮肤的起爆位置摩擦系数和压力系数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号