通过改变支杆喷射角实现扰流喷气燃烧器的火焰稳定和燃烧增强

Pub Date : 2024-07-12 DOI:10.24425/ather.2024.151227
Venkateshwaran Vanamamalai, Padmanathan Panneerselvam
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引用次数: 0

摘要

本研究探讨了带支杆的扰流喷气燃烧器中的反应流特性,尤其侧重于实施不同的喷射策略。为了评估对系统的影响,我们使用了一个三维的德国航天中心(DLR)扰流喷射燃烧器,在三角楔上进行了多次喷射并改变了喷射角度。分析考虑了平行、向上和向下喷射的三个喷射器,喷射角度分别为 15° 和 30°。数值研究是在总压恒定为 7.82 巴、温度为 340 K、入口处空速为 2 马赫的条件下进行的。结果凸显了喷射器位置和形状在促进火焰稳定方面的重要性。此外,喷射角度在减轻冲击波强度方面起着至关重要的作用。数值分析涉及稳态雷诺平均纳维-斯托克斯方程和剪应力传输 k-ω 湍流模型。通过研究燃烧器的马赫数、静压和燃烧效率等关键变量,对所获得的结果进行了分析。根据计算结果,向上喷射燃料不仅会增加整体压力损失,还会增强支柱下游的亚音速状态,从而提高混合和燃烧效率。这主要是由于支柱边缘产生的冲击波以及与燃料流剪切层的相互作用。
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Flame stabilization and combustion enhancement in a scramjet combustor by varying strut injection angles
The present study explores the characteristics of reacting flow in a scramjet combustor with struts, focusing particularly on implementing different injection strategies. A three-dimensional DLR scramjet combustor is utilised to assess the impact on the system, incorporating multiple injections and varying injection angles on the triangular wedge. The analysis considers three injectors with parallel, upward and downward injections at angles of 15° and 30°. The numerical investigation is con-ducted under a constant total pressure of 7.82 bar, a temperature of 340 K, and an airspeed of Mach 2 at the inlet. The results highlight the significance of injector location and shape in promoting flame stabilization. Furthermore, injection angles play a crucial role in mitigating shockwave intensity. The numerical analysis involves a steady-state Reynolds-averaged Navier-Stokes equation with the shear stress transport k–ω turbulence model. The obtained results were analyzed by examining the critical variables such as Mach number, static pressure and combustion efficiency across the combustor. Based on the com-putational results, injecting fuel upward not only increases the overall pressure loss but also enhances the subsonic regime downstream of the strut, which leads to better mixing and combustion efficiencies. This is primarily due to shockwave generation from the edges of the strut and the interactions with the fuel stream shear layers.
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