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Two-Phase Flow Interior Ballistics Model of Naval Large caliber Guided Projectile Gun System

机译:海军大口径引导射弹枪系统两相流内部弹道模型

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The two-phase flow mathematical model for the solid granular propellant and its products of combustion inside large caliber naval gun guided projectile system (NGGPS) during interior ballistic cycle is presented. The model includes the governing equations of mass, momentum and energy for both phases as well as the constitutive laws. The discharged combustion products from the igniter vent-holes into the chamber are acquired by incorporation in the model the two-phase flow model of the bayonet igniter. The system of equations of the two-phase flow model is solved using the second order accurate Maccromack's technique. A one dimensional model introduced by G.A. Sod (shock tube) is utilized to test the ability of Maccromack's algorithm in solving the initial boundary value problem (IBVP) for the system of equations with shock wave behavior. The numerical method is verified by using an exact solution of a test problem. The moving control volume conservation method (MCVC) is used to handle the moving boundary as well as a self-adapting method was used to expand the computational domain in order to follow the movement of the projectile down the gun bore. The numerical results are validated with experimental data. The interior ballistics performance of a 130 mm naval guided projectile gun system is closely predicted using the presented two-phase flow model and the numerical code.
机译:呈现了在室内弹道循环中的大规模粒状推进剂的两相流数学模型及其燃烧内的燃烧产物。该模型包括用于两个阶段的质量,动量和能量的控制方程以及本构规则。通过在模型中掺入刺刀点火器的两相流程模型中,获取来自点火器通气孔进入腔室的排出的燃烧产物。使用二阶精确的MACcRomack技术解决了两相流模型的等式系统。 G.A引入的一维模型。 SOD(冲击管)用于测试MACCROMCCK算法在解决具有冲击波行为的方程系统的初始边界值问题(IBVP)的能力。通过使用测试问题的精确解决方案来验证数值方法。移动控制量保守方法(MCVC)用于处理移动边界以及自适应方法用于扩展计算域以便沿着枪孔沿着射弹的移动。数值结果用实验数据验证。使用呈现的两相流程模型和数值代码密切预测130 mm海军引导射弹枪系统的内部弹道性能。

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