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首页> 外文期刊>Journal of propulsion and power >Analysis of Gas-Dynamic Effects in Explosively Actuated Valves
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Analysis of Gas-Dynamic Effects in Explosively Actuated Valves

机译:爆炸驱动阀的气动力效应分析

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A quasi-one-dimensional model is formulated to assess unsteady gas dynamics occurring within axisymmetric explosively actuated valves. The model accounts for pressure-dependent explosive burn within an actuator, compressible product-gas flow through a narrow port connecting the actuator to a gas expansion chamber, and piston motion due to the combined effects of gas-dynamic forces within the expansion chamber and structural deformation forces between the piston and valve bore. The initial boundary-value problem is posed in terms of generalized coordinates to facilitate numerical computations on a domain that volumetrically expands due to combustion and piston motion. Predictions for a baseline configuration that is representative of a conventional valve indicate that gas-dynamic waves do not result in irregular operation, implying that spatially homogeneous models may be adequate for describing its performance. However, small changes in valve geometry and explosive mass can produce large variations in gas-dynamic fields that significantly affect both the magnitude and frequency of the pyrotechnic shock transmitted to the valve's supporting structure. Port diameter is shown to control the rates of explosive energy release and acoustic energy transport, which can significantly affect piston motion and stroke time.
机译:拟定一维模型以评估轴对称爆炸致动阀内发生的不稳定气体动力学。该模型考虑了执行器内与压力有关的爆炸性燃烧,可压缩的产品气体流通过将执行器连接到气体膨胀室的狭窄端口以及由于膨胀室内的气体动力与结构的综合作用而导致的活塞运动活塞和阀孔之间的变形力。初始边界值问题是根据广义坐标提出的,以便于在由于燃烧和活塞运动而体积扩展的域上进行数值计算。对于代表常规阀的基线配置的预测表明,气动波不会导致不规则操作,这意味着空间均匀的模型可能足以描述其性能。但是,阀门几何形状和爆炸物的微小变化会在气体动力场中产生很大的变化,从而极大地影响传递到阀门支撑结构的烟火冲击的幅度和频率。所示端口直径可控制爆炸能量释放和声能传输的速率,这会显着影响活塞的运动和冲程时间。

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