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Hybrid Rockets with Axial Injector: Port Diameter Effect on Fuel Regression Rate

机译:带轴向喷射器的混合火箭:端口直径对燃料回归率的影响

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摘要

A numerical rebuilding of a series of test data obtained with static firings of a lab-scale hybrid rocket is carried out with a Reynolds-averaged Navier-Stokes solver including detailed gas-surface interaction modeling based on surface mass and energy balances. Two experimental campaigns are considered in which gaseous oxygen is fed into axisymmetric hydroxyl-terminated polybutadiene grains through an axial conical subsonic nozzle. A validation rebuilding of all of the firing tests has been performed first to highlight numerical prediction capabilities and modeling limits. Despite the several geometrical simplifications, which allows using a reduced number of cells in the computational domain and thus performing parametric analyses efficiently, the present computational fluid dynamics approach is able to capture the main features of the motor internal ballistics, fairly reproducing the average chamber pressure values and the fuel regression rate trends with oxidizer mass flux and port diameter. Computed flowfields show the establishment of a recirculation region at the motor head end, with a variable extension depending on the port diameter, which promotes propellant mixing and raises the fuel regression rate. Numerical simulations, supported by the experimental results, clarify the mechanism through which the port diameter has a direct influence on the fuel regression.
机译:使用雷诺平均的Navier-Stokes求解器对实验室规模混合动力火箭的静态点火所获得的一系列测试数据进行数值重建,该求解器包括基于表面质量和能量平衡的详细的气-面相互作用模型。考虑了两个实验活动,其中通过轴向圆锥形亚音速喷嘴将气态氧供入轴对称的羟基封端的聚丁二烯晶粒中。首先执行了所有点火测试的验证重建,以突出数字预测功能和建模限制。尽管进行了几项几何简化,从而允许在计算域中使用数量减少的单元,从而有效地执行参数分析,但本发明的计算流体动力学方法仍能够捕获电动机内部弹道的主要特征,从而公平地再现平均腔室压力值和燃料回归率随氧化剂质量通量和端口直径的变化而变化。计算出的流场表明,在电机头端建立了一个回流区域,取决于进气口的直径,其延伸范围可变,从而促进了推进剂的混合并提高了燃料的回收率。实验结果支持的数值模拟阐明了端口直径直接影响燃料回归的机理。

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  • 来源
    《Journal of propulsion and power》 |2016年第4期|984-996|共13页
  • 作者单位

    University of Rome 'La Sapienza', 00184 Rome, Italy;

    University of Rome 'La Sapienza', 00184 Rome, Italy;

    University of Naples 'Federico Ⅱ', 80125 Naples, Italy,Department: Centrifugal Compressors, General Electric Company Oil and Gas, Via F. Matteucci 2, 50127 Florence, Italy;

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