首页> 外文OA文献 >Computational Study of Fluidic Thrust Vectoring using Separation Control in a Nozzle
【2h】

Computational Study of Fluidic Thrust Vectoring using Separation Control in a Nozzle

机译:喷嘴中分离控制的流体推力矢量化计算研究

摘要

A computational investigation of a two- dimensional nozzle was completed to assess the use of fluidic injection to manipulate flow separation and cause thrust vectoring of the primary jet thrust. The nozzle was designed with a recessed cavity to enhance the throat shifting method of fluidic thrust vectoring. The structured-grid, computational fluid dynamics code PAB3D was used to guide the design and analyze over 60 configurations. Nozzle design variables included cavity convergence angle, cavity length, fluidic injection angle, upstream minimum height, aft deck angle, and aft deck shape. All simulations were computed with a static freestream Mach number of 0.05. a nozzle pressure ratio of 3.858, and a fluidic injection flow rate equal to 6 percent of the primary flow rate. Results indicate that the recessed cavity enhances the throat shifting method of fluidic thrust vectoring and allows for greater thrust-vector angles without compromising thrust efficiency.
机译:完成了对二维喷嘴的计算研究,以评估使用流体喷射来操纵流动分离并引起一次射流推力的推力矢量。喷嘴设计有凹腔,以增强流体推力矢量的喉移方法。结构化网格,计算流体动力学代码PAB3D用于指导设计并分析60多种配置。喷嘴设计变量包括腔室收敛角,腔室长度,流体注入角,上游最小高度,后甲板角度和后甲板形状。所有模拟的静态自由流马赫数均为0.05。喷嘴压力比为3.858,射流注入流量等于主流量的6%。结果表明,凹腔增强了流体推力矢量的喉移方法,并允许更大的推力矢量角度而不会影响推力效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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