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Numerical and experimental investigation of plasma plume deflection with MHD flow control

机译:MHD流量控制等离子体羽流偏转的数值和实验研究

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摘要

This paper presents a composite magneto hydrodynamics (MHD) method to control the low-temperature micro-ionized plasma flow generated by injecting alkali salt into the combustion gas to realize the thrust vector of an aeroengine.The principle of plasma flow with MHD control is analyzed.The feasibility of plasma jet deflection is investigated using numerical simulation with MHD control by loading the User-Defined Function model.A test rig with plasma flow controlled by MHD is established.An alkali salt compound with a low ionization energy is injected into combustion gas to obtain the low-temperature plasma flow.Finally,plasma plume deflection is obtained in different working conditions.The results demonstrate that plasma plume deflection with MHD control can be realized via numerical simulation.A low-temperature plasma flow can be obtained by injecting an alkali metal salt compound with low ionization energy into a combustion gas at 1800-2500 K.The vector angle of plasma plume deflection increases with the increase of gas temperature and the magnetic field intensity.It is feasible to realize the aim of the thrust vector of aeroengine by using MHD to control plasma flow deflection.
机译:本文提出了一种复合磁流体动力学(MHD)方法来控制通过向燃烧气体中注入碱金属盐以实现航空发动机推力矢量而产生的低温微电离等离子体流。分析了具有MHD控制的等离子体流的原理通过加载用户定义的函数模型,利用MHD控制进行数值模拟,研究了等离子体射流偏转的可行性,建立了由MHD控制的等离子体流量的试验台,将具有低电离能的碱金属盐化合物注入燃烧气体中最后得到了在不同工况下的等离子羽流偏转。结果表明,通过数值模拟可以实现MHD控制的等离子羽流偏转。低电离能的碱金属盐化合物在1800-2500 K时变成燃烧气体。等离子羽偏角的矢量角利用MHD控制等离子流的偏转来实现航空发动机推力矢量的目的是可行的。

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  • 来源
    《等离子体科学和技术(英文版)》 |2018年第6期|152-160|共9页
  • 作者单位

    School of Energy and Power Engineering, Beihang University, Beijing 100191, People's Republic of China;

    School of Aviation Operations and Services, Aviation University of Air Force, Changchun 130022,People's Republic of China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, People's Republic of China;

    Air Force Command College, Beijing 100191, People's Republic of China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, People's Republic of China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, People's Republic of China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, People's Republic of China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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