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Numerical study on two-phase turbulent flow of blunt combustor with strongly swirling flow

机译:具有强旋转流动的两相湍流两相湍流的数值研究

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This study sets double injections in the inlet of the flow field to study the new blunt body's law of the flow patterns and the combustion efficiency under the condition of the two-phase flow. Compared with the vortex shedding mechanism of the V-gutter blunt, the computational results show that the vortex shedding mechanism of the coupling combustion stabilizer is controlled by the vortex of the swirling flow. During one shedding period, the heat and mass can be enhanced by the vortex source which is brought by the vortex breaking. The vortex structure is complex, and the increasing number is advantageous to heat and mass transfer between fluids. Under the combustion condition, the violent chemical reactions behind the blunt body bate the vortex shedding process. The flow field and vortex becomes more symmetric. The velocity field and pressure distribution behind the blunt body tends to be uniformly distributed under the combustion condition. Kerosene particles and air will be mixed and burned more fully, which is the cause of the function of the cyclone.
机译:本研究在流动场的入口处设置了双重注射,以研究新的钝物体的流动模式和在两相流条件下的燃烧效率。与V沟槽钝的涡流脱落机构相比,计算结果表明,耦合燃烧稳定剂的涡旋脱落机构由旋流的涡流控制。在一个脱落期间,通过涡旋源可以通过涡流源来增强热量和质量。涡旋结构是复杂的,并且越来越多的数量是有利的流体之间的热量和质量传递。在燃烧条件下,钝体背后的剧烈化学反应涡流血管脱落过程。流场和涡流变得更加对称。钝体后面的速度场和压力分布趋于均匀地分布在燃烧状态下。煤油颗粒和空气将更充分地混合并燃烧,这是旋风分离器功能的原因。

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