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Numerical simulation on acoustic mode and pressure-oscillation decay in flnocyl- and axil-grain combustion chambers

机译:Flnocyl-and Axil型燃烧室声学模式和压力振荡衰减的数值模拟

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Combustion instability has long been one of the severe problems suffered by solid rocket motors (SRMs). Currently, acoustic instability is one of the most widely researched classifications in the field of instability combustion. This study focuses on the differences in the acoustic characteristics and the decay characteristics of the pressure oscillation excited by pulses between finocyland axil-grain combustion chambers. A method is proposed for the suppression of the acoustic instability combustion. The finocyland axil-grain combustion chambers were investigated via an acoustic finite-element analysis and computational fluid dynamics (CFD). The ideas of time-frequency joint analysis and pressure-pulse decay were applied to study the acoustic field and oscillating flow field in the combustion chamber. The results of the acoustic harmonic response analysis and CFD calculations indicated that the axil grain is more stable than the finocyl grain in low-order acoustic modes. The time-weighted average response amplitudes at the 1st-order acoustic frequency for the axil-grain motor at the combustion-chamber head and end were 54.8% and 75.4%, respectively, of those for the finocyl-grain motor. (c) 2020 Elsevier Masson SAS. All rights reserved.
机译:燃烧不稳定长期以来一直是固体火箭电机(SRMS)遭受的严重问题之一。目前,声学不稳定是不稳定燃烧领域中最广泛研究的分类之一。本研究重点介绍了在FinoCyland Xil型燃烧室之间脉冲激发的压力振荡的声学特性和衰减特性的差异。提出了一种用于抑制声不稳定燃烧的方法。通过声学有限元分析和计算流体动力学(CFD)研究了FinoCyland轴晶燃烧室。时间频率接头分析和压力脉冲衰减的思想被应用于研究燃烧室中的声场和振荡流场。声谐波响应分析和CFD计算结果表明,轴晶比低阶声学模式中的三翼颗粒更稳定。用于燃烧室头部的轴晶电动机的第一阶声频处的时加入的平均响应幅度分别为FinoCyl - 谷物电动机的氧化型电动机的第1阶声频频率为54.8%和75.4%。 (c)2020 Elsevier Masson SAS。版权所有。

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