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Numerical and Experimental Investigation of a Supersonic Flow Field around Solid Fuel on an Inclined Flat Plate

机译:倾斜平板上固体燃料周围超声波流场的数值和实验研究

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摘要

This research adopts a shock tube 16 meters long and with a 9 cm bore to create a supersonic, high-temperature, and high-pressure flowfield to observe the gasification and ignition of HTPB solid fuel under different environments. Also, full-scale 3D numerical simulation is executed to enhance the comprehension of this complex phenomenon. The CFD (Computational Fluid Dynamics) code is based on the control volume method and the pre-conditioning method for solving the Navier-Stokes equations to simulate the compressible and incompressible coupling problem. In the tests, a HTPB slab is placed in the windowed-test section. Various test conditions generate different supersonic Mach numbers and environmental temperatures. In addition, the incident angles of the HTPB slab were changed relative to the incoming shock wave. Results show that as the Mach number around the slab section exceeded 1.25, the flowfield temperature achieved 1100 K, which is higher than the HTPB gasification temperature (930 K ~ 1090 K). Then, gasification occurred and a short-period ignition could be observed. In particular, when the slab angle was 7∘, the phenomenon became more visible. This is due to the flow field temperature increase when the slab angle was at 7∘.
机译:这项研究采用了16米长的冲击管,孔9厘米,以创造超音速,高温和高压流场,以观察不同环境下HTPB固体燃料的气化和点火。此外,执行全尺度3D数值模拟以增强这种复杂现象的理解。 CFD(计算流体动力学)代码基于控制卷方法和用于求解Navier-Stokes方程来模拟可压缩和不可压缩耦合问题的预处理方法。在测试中,将HTPB板坯放置在窗口 - 测试部分中。各种测试条件会产生不同的超音速马赫数和环境温度。另外,HTPB板坯的入射角相对于进入的冲击波改变。结果表明,由于平板部分周围的马赫数超过1.25,因此流野温度达到1100 k,其高于HTPB气化温度(930k〜1090 k)。然后,发生气化并且可以观察到短周期点火。特别是,当板坯角为7¾时,该现象变得更加可见。这是由于流场温度增加,当平板角度为7¾时。

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  • 作者

    Uzu-Kuei Hsu;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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