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Hypersonic flow control using magneto-hydrodynamics

机译:使用磁流体动力学的高超声速流量控制

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摘要

The focus of the present work is on the use of magneto hydrodynamics as a flow control device for supersonic and hypersonic vehicles. A three dimensional parabolized Navier Stokes solver was developed to take into account the effects of magnetic fields , by incorporating two magneto-hydrodynamic models. The modified solver was then used to study the effects of magneto-hydrodynamics on a variety of configurations, one study of which involved surrogate model based optimisation procedures. The first component of research involved validation of the low magnetic Reynolds number model model against well documented test cases. Good agreement with the nu- merical test cases for flows past a blunt body and a flat plate boundary layer flow, both in the presence of a magnetic field, was found. A novel application of the method of man- ufactured solutions to the simplified mapeto-hydrodynamic model was made to ensure its Accuracy. Assessment of the procedures used for numerical optimisation, were made against known closed-form solutions, and a theoretical axisymmetric body of revolution. An investigation for an optimal magnetic field configuration, for an over-sped Ram- jet intake was made. It was found that for a suitable choice of magnetic field strength, shock on lip could be achieved. Furthermore, for a suitable choice for the position of the magnetic field source, the design condition can also be satisfied using a weaker mag- netic field. Finally a study examining the use of magnetic fields for flows past a slender body were was performed. Given a suitably orientated dipole source, it was shown that the magnetic field can introduce asymmetries, for an otherwise symmetric flowfield, and thereby introduce side form on the missile.
机译:当前工作的重点是将磁流体动力学用作超音速和高超音速车辆的流量控制装置。通过合并两个磁流体动力学模型,开发了一种三维抛物线化的Navier Stokes解算器,以考虑磁场的影响。修改后的求解器随后用于研究磁流体动力学对各种配置的影响,其中一项研究涉及基于替代模型的优化程序。研究的第一部分涉及针对有据可查的测试用例验证低磁雷诺数模型模型。发现在磁场存在下,流过钝体和平板边界层流的数值测试用例均符合良好。制造解决方案方法在简化的Mapeto-水动力模型中得到了新颖的应用,以确保其准确性。针对已知的封闭形式解和理论上的轴对称旋转体,对用于数值优化的程序进行了评估。研究了最佳磁场配置,用于过高的Ram-jet进气口。已经发现,对于适当的磁场强度选择,可以实现对嘴唇的冲击。此外,为了适当选择磁场源的位置,还可以使用较弱的磁场来满足设计条件。最后,进行了一项研究,研究了使用磁场流过细长体的过程。在给定适当定向的偶极子源的情况下,显示出磁场可以为不对称的流场引入不对称性,从而在导弹上引入副形式。

著录项

  • 作者

    Shaw Scott T; Bennett J S;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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