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Shape effect of cavity flameholder on mixing zone of hydrogen jet at supersonic flow

机译:腔式火焰保持器对超声速氢射流混合区的形状影响

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摘要

Cavity flameholder is known as an efficient technique for providing the ignition zone. In this research, computational fluid dynamic is applied to study the influence of the various shapes of cavity as flameholder on the mixing efficiency inside the scramjet. To evaluate different shapes of cavity flame holder, the Reynolds-averaged Navier–Stokes equations with (SST) turbulence model are solved to reveal the effect of significant parameters. The influence of trapezoidal, circle and rectangular cavity on fuel distribution is expansively analyzed. Moreover, the influence of various Mach numbers (M = 1.2, 2 and 3) on mixing rate and flow feature inside the cavity is examined. The comprehensive parametric studies are also done. Our findings show that the trapezoidal cavity is more efficient than other shapes in the preservation of the ignition zone within the cavity. In addition, the increase of free stream Mach number intensifies the main circulations within cavity and this induces a stable ignition zone within cavity.
机译:腔式火焰保持器是提供点火区的有效技术。在这项研究中,应用计算流体动力学来研究作为火焰保持器的腔体的各种形状对超燃冲压发动机内部混合效率的影响。为了评估腔体火焰保持器的不同形状,求解了具有(SST)湍流模型的雷诺平均Navier–Stokes方程,以揭示重要参数的影响。广泛分析了梯形,圆形和矩形腔体对燃料分配的影响。此外,还检查了各种马赫数(M = 1.2、2和3)对空腔内混合速率和流动特性的影响。还进行了全面的参数研究。我们的发现表明,梯形腔在保持腔内点火区域方面比其他形状更有效。另外,自由流马赫数的增加增强了腔体内的主要循环,并在腔体内引起了稳定的点火区。

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