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高超声速低温喷管横向射流混合反应过程的非定常数值模拟

邵艳 周进 赖林 汪洪波 雷静

邵艳, 周进, 赖林, 汪洪波, 雷静. 高超声速低温喷管横向射流混合反应过程的非定常数值模拟[J]. 航空动力学报, 2011, 26(7): 1599-1607.
引用本文: 邵艳, 周进, 赖林, 汪洪波, 雷静. 高超声速低温喷管横向射流混合反应过程的非定常数值模拟[J]. 航空动力学报, 2011, 26(7): 1599-1607.
SHAO Yan, ZHOU Jin, LAI Lin, WANG Hong-bo, LEI Jing. Unsteady numerical investigation of mixing and reacting for transverse injection in HYLTE nozzle[J]. Journal of Aerospace Power, 2011, 26(7): 1599-1607.
Citation: SHAO Yan, ZHOU Jin, LAI Lin, WANG Hong-bo, LEI Jing. Unsteady numerical investigation of mixing and reacting for transverse injection in HYLTE nozzle[J]. Journal of Aerospace Power, 2011, 26(7): 1599-1607.

高超声速低温喷管横向射流混合反应过程的非定常数值模拟

基金项目: 国家自然科学基金(11002158)

Unsteady numerical investigation of mixing and reacting for transverse injection in HYLTE nozzle

  • 摘要: 基于混合RANS/LES (Reynolds averaged Navier-Stokes/large eddy simulation)方法模拟了高超声速低温(HYLTE)喷管倾斜入射横向射流的非定常混合反应过程,研究了不同副喷管喷射角和副喷管间距对射流穿透、混合以及总压损失的影响.计算表明,射流穿透深度和混合程度随着副喷管喷射角的增大而增大,但是总压损失也随之增大;副喷管间距增大,燃料射流的穿透深度增大而且总压损失略有减小,但反转旋涡对(CVP)的集中会造成射流与来流的接触面积减小,侧面混合变差.因此优化副喷管喷射角和间距对于提高HYLTE喷管混合性能乃至激光器光学性能都十分重要.通过模拟HYLTE喷管和光腔耦合区域的12组分23方程的反应流场发现,在中心线附近有较强的小信号增益系数,混合RANS/LES相比RANS方法更能反映流场变量的细节变化.

     

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出版历程
  • 收稿日期:  2010-12-08
  • 修回日期:  2011-03-03
  • 刊出日期:  2011-07-28

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