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Radiation Effects on Ignition Delay and Flame Spread in Solid Propellant Rocket Motors

机译:辐射对固体推进剂火箭发动机点火延迟和火焰扩散的影响

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Numerical studies have been carried out to examine the radiation effects on ignition delay and flame spread in solid rocket motors with uniform and non-uniform port geometry. Parametric analytical studies have been carried out using 2d transient, double precision, pressure-based, species, SST k-omega turbulence model. In the numerical study, a fully implicit finite volume scheme of the compressible Navier-Stokes equations is employed. As a part of the code validation and calibration, the numerically predicted boundary-layer blockage at the Sanal flow choking condition for channel flows is verified using the closed-form analytical model of V.R. Sanal Kumar et al. (AIP Advances, 8, 025315, 2018) and found excellent agreement with the exact solution. Detailed studies have been carried out to examine the influence of port geometry on the surface heat flux distribution, with and without radiation effects. We observed through the parametric studies that the radiation effect is having more significant effect in SRMs with non-uniform port geometry than uniform port cases with respect to its ignition delay and overall flame spread interval. The numerical results presented in this paper is useful for the ignition transient studies of high performance solid propellant rocket motors with non-uniform port geometry.
机译:已经进行了数值研究,以检查辐射对具有均匀和不均匀端口几何形状的固体火箭发动机中的点火延迟和火焰蔓延的影响。使用二维瞬态,双精度,基于压力的物种,SSTk-ω湍流模型进行了参数分析研究。在数值研究中,采用了可压缩的Navier-Stokes方程的完全隐式有限体积格式。作为代码验证和校准的一部分,使用V.R的闭式分析模型验证了在Sanal流量阻塞条件下通道流动的数值预测边界层堵塞情况。 Sanal Kumar等。 (AIP Advances,8,025315,2018),并找到了与确切解决方案的极好的协议。已经进行了详细的研究以检查端口几何形状对有无辐射影响的表面热通量分布的影响。通过参数研究,我们发现,在端口几何形状不均匀的SRM中,辐射效应在点火延迟和总火焰传播间隔方面比均匀端口情况更显着。本文提出的数值结果对于具有非均匀端口几何形状的高性能固体推进剂火箭发动机的点火瞬变研究很有用。

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