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首页> 外文期刊>Aerotecnica missili & spazio >Unsteady 1-D Thrust Modeling with EOS Effects for Ram Accelerator Experiments at Different Bores
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Unsteady 1-D Thrust Modeling with EOS Effects for Ram Accelerator Experiments at Different Bores

机译:具有EOS效应的非定常一维推力建模,用于不同镗孔的Ram加速器实验

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摘要

Advances made to the unsteady, one-dimensional (1-D) modeling of the thermally choked ram accelerator thrust-Mach number characteristics include the use of real-gas equations of state to account for the compressibility effects of the combustion products. Equations of state based on generalized empirical and theoretical considerations are incorporated into a 1-D computer code to predict the combustion end state equilibrium conditions when the propellant starts out a relatively high fill pressure (>2.5 MPa) and the projectile acceleration exceeds 100 km/s2. The objective of this work is to improve the unsteady 1-D model as a useful tool to predict the thrust of the thermally choked ram accelerator propulsive mode by utilizing key results from the more computationally intensive 2-D or 3-D simulations. New thrust-Mach number calculations compared with experimental data from 25-mm, 30-mm, 38-mm, 90-mm, and 120-mm-bore experiments are generally in good agreement until the point where enhanced accelerations are observed, presumably due to projectile material combustion. The results of this investigation indicate the need for more research on ram accelerator flow fields and the role projectile material may play in the combustion process.
机译:热阻塞冲压油门推力-马赫数特性的非稳态一维(1-D)建模取得的进展包括使用状态方程来解释燃烧产物的可压缩性。一维计算机代码结合了基于普遍的经验和理论考虑的状态方程,以预测当推进剂开始产生相对较高的填充压力(> 2.5 MPa)且弹丸加速度超过100 km /时的燃烧最终状态平衡条件。 s2。这项工作的目的是通过利用计算量较大的2-D或3-D模拟的关键结果,改进非稳态1-D模型,作为预测热阻冲压加速器推进模式推力的有用工具。新推力-马赫数计算与25毫米,30毫米,38毫米,90毫米和120毫米孔实验的实验数据相比,在观察到增强的加速度之前通常是一致的,大概是由于弹丸物质燃烧。这项研究的结果表明,需要对冲压加速器的流场以及弹丸材料在燃烧过程中的作用进行更多的研究。

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  • 来源
    《Aerotecnica missili & spazio》 |2018年第1期|19-26|共8页
  • 作者单位

    University of Washington, Seattle, WA, WA, USA;

    Laboratory PPR.IME, ENSMA, Futuroscope, France;

    Laboratory PPR.IME, ENSMA, Futuroscope, France;

    University of the West of England;

    University of Washington, Seattle, WA, WA, USA;

    Exobal Consulting, Saint-Louis la Chaussée, France;

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