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1.
Hall效应对三维磁流体发生器的影响   总被引:3,自引:0,他引:3  
应用三维非理想低磁雷诺数磁流体五方程模型发展了对带有强制项的Navier-Stokes方程组采用熵条件格式, 对椭圆型电势方程采用SOR进行迭代的数值方法,研究了Hall效应对磁流体旁路超燃冲压发动机中磁流体发生器流动及性能的影响.磁流体发生器采用电子束获得有效可靠的电导率. 计算结果表明,Hall效应可引起流场和电场的扭曲, 从而诱导出不稳定二次流的发展与演变,并破坏Joule热的分布. 对这些磁流体现象作出了较详细的分析.最后计算了磁流体发生器的性能参数, 说明Hall效应将导致磁流体发生器的性能下降.   相似文献   

2.
磁流体方程的数值求解在等离子体物理学、天体物理研究以及流动控制等领域具有重要意义,本文构造了用于求解理想磁流体动力学方程的基于移动网格的熵稳定格式,此方法将Roe型熵稳定格式与自适应移动网格算法结合,空间方向采用熵稳定格式对磁流体动力学方程进行离散,利用变分法构造网格演化方程并通过Gauss-Seidel迭代法对其迭代求解实现网格的自适应分布,在此基础上采用守恒型插值公式实现新旧节点上的量值传递,利用三阶强稳定Runge-Kutta方法将数值解推进到下一时间层。数值实验表明,该算法能有效捕捉解的结构(特别是激波和稀疏波),分辨率高,通用性好,具有强鲁棒性。  相似文献   

3.
磁流体动力学在航空工程中的应用与展望   总被引:2,自引:0,他引:2  
介绍了磁流体动力学在航空工程中的主要应用方式,主要包括:磁流体冲压组合发动机、磁流体涡轮组合发动机、燃烧室后磁流体发电、表面磁流体发电、磁流体加速风洞、磁流体推力矢量、进气道大尺寸磁流体流动控制、边界层分离流动控制、边界层转捩控制、飞行器头部热流控制等;探讨了磁流体技术在应用中存在的关键科学与技术问题,对导电流体的产生、磁流体实验设备与实验技术、多场耦合机理及数值模拟方法等进行了分析;最后对磁流体技术在航空工程上的应用与发展进行了总结与展望.  相似文献   

4.
基于Biot流体饱和多孔介质理论及磁流体动力学理论,考虑了强导电性磁流体产生的磁压力对固体骨架的影响;将反映电磁力的Maxwell应力张量应用到Biot模型中,建立了磁流体饱和多孔介质的基本方程,并研究了内含圆柱形空腔的半无限磁流体饱和多孔介质处于均匀磁场中且其空腔表面受到均布瞬态荷载作用时的响应;利用积分变换,得到固体骨架应力场、位移场及磁流体压力场随时间变化的规律。数值计算结果表明:外加磁场分别为0、10A/m、100A/m时,各场变量随时间变化的规律和分布规律不变,但外加磁场的增大会使场变量的峰值及达到峰值的时间有所增加,且对其稳定值的影响甚微;在给定时刻,外加磁场强度越大,场变量沿径向达到恒定值的位置越靠近空腔表面;另外,磁压力对固体骨架的耦合作用效应较为显著。  相似文献   

5.
无量纲磁流体流动控制方程中的哈特曼数较大将导致数值计算发散或误差过大。将无网格Galerkin法引入绝缘管道内的稳定磁流体流动计算中,针对磁流体控制方程中大哈特曼数导致计算误差大的情况,对无网格Galerkin法添加了稳定项。计算结果表明,同等条件下,添加了稳定项的无网格Galerkin法总体相对误差远小于标准无网格Galerkin法的结果,且可以计算哈特曼数最大达50000绝缘管道内的磁流体流动。  相似文献   

6.
自从20世纪90年代初,AJAX计划的提出掀起了磁流体技术的研究热潮.本文总结了国内外关于磁流体湍流研究的成果,包括两方面:磁流体湍流的特点和数值模型.相比于普通湍流,磁流体湍流表现出电磁诱导的各向异性、线性焦耳耗散、湍流重层流化等特性,本文同时对磁流体湍流的结构和脉动抑制现象进行了描述:数值模型研究从雷诺平均方程和大涡模拟两方面作了介绍.当前研究集中在不可压缩磁流体湍流,距离能够应用于航空航天问题还有很长的路要走.  相似文献   

7.
非结构混合网格高超声速绕流与磁场干扰数值模拟   总被引:2,自引:0,他引:2  
对均匀磁场干扰下的二维钝头体无粘高超声速流场进行了基于非结构混合网格的数值模拟.受磁流体力学方程组高度非线性的影响及考虑到数值模拟格式的精度,目前在此类流场的数值模拟中大多使用结构网格及有限差分方法,因而在三维复杂外形及复杂流场方面的研究受到限制.本文主要探索使用非结构网格(含混合网格)技术时的数值模拟方法.控制方程为耦合了Maxwell方程及无粘流体力学方程的磁流体力学方程组,数值离散格式采用Jameson有限体积格心格式,5步Runge-Kutta显式时间推进.计算模型为二维钝头体,初始磁场均匀分布.对不同磁感应强度影响下的高超声速流场进行了数值模拟,并与有限的资料进行了对比,得到了较符合的结果.  相似文献   

8.
在一维弹塑性反应流体力学拉格朗日编码SSS 的基础上扩充编制成功的一维磁流体力学计算编码SSS/MHD,可以计算模拟磁驱动等熵压缩(ICE) 实验中多介质、多空腔的不同厚度平行样品构形(台阶靶) 运动,并且把磁流体计算与模拟脉冲功率驱动源的集中参数外电路方程组直接耦合,不依赖于实验当时测量的驱动电流(电压) 数据,直接根据原始数据对实验样品的力学和电磁学运动过程和各种参数剖面进行数值模拟. 介绍了对于纯铝、钽和塑料粘结炸药等3 种性能不同材料的台阶靶样品ICE 实验的计算模拟,得到了与激光速度干涉测量的不同厚度样品后自由面(或光学窗口界面) 速度历史十分符合的结果,对于实验结果的分析和实验设计的改进具有重要意义. 旨在为磁驱动实验系统的校核、设计和实验构形改进提供有一定预测能力、功能比较完善的计算模拟研究手段.   相似文献   

9.
磁流体流动在现代工业和科研中有着广泛的应用,但磁流体的流动受到磁场的影响,与一般流体区别较大,需要对其进行深入的研究。磁流体的流动受到流体力学流动方程和麦克斯韦方程的共同影响,其精确解在有限条件下才能得到,因此对磁流体的流动进行数值模拟具有重要的意义。本文采用移动最小二乘法计算形函数,利用无网格局部Petrov-Galerkin(MLPG)法得到控制方程的离散形式,在管壁为任意电导率及任意方向外加磁场的条件下,对方形直管道中定常流动的磁流体进行了数值计算。MLPG法的计算是基于节点的,不需要任何网格或单元,是一种真正的无网格方法。计算结果与Scheriff精确解进行了比较,表明该方法适用于中等以下哈特曼数的磁流体流动计算。  相似文献   

10.
在一维弹塑性反应流体力学拉格朗日编码SSS 的基础上扩充编制成功的一维磁流体力学计算编码SSS/MHD,可以计算模拟磁驱动等熵压缩(ICE) 实验中多介质、多空腔的不同厚度平行样品构形(台阶靶) 运动,并且把磁流体计算与模拟脉冲功率驱动源的集中参数外电路方程组直接耦合,不依赖于实验当时测量的驱动电流(电压) 数据,直接根据原始数据对实验样品的力学和电磁学运动过程和各种参数剖面进行数值模拟. 介绍了对于纯铝、钽和塑料粘结炸药等3 种性能不同材料的台阶靶样品ICE 实验的计算模拟,得到了与激光速度干涉测量的不同厚度样品后自由面(或光学窗口界面) 速度历史十分符合的结果,对于实验结果的分析和实验设计的改进具有重要意义. 旨在为磁驱动实验系统的校核、设计和实验构形改进提供有一定预测能力、功能比较完善的计算模拟研究手段.  相似文献   

11.
A mathematical model will be analyzed in order to study the effects of variables viscosity and thermal conductivity on unsteady heat and mass transfer over a vertical wavy surface in the presence of magnetic field numerically by using a simple coordinate transformation to transform the complex wavy surface into a flat plate. The fluid viscosity is assumed to vary as a exponential function of temperature and thermal conductivity is assumed to vary linearly with temperature. An implicit marching Chebyshev collocation scheme is employed for the analysis. Numerical solutions are obtained for different values of variable viscosity, variable thermal conductivity and MHD variation parameter. Numerical results show that, variable viscosity, variable thermal conductivity and MHD variation parameter have significant influences on the velocity, temperature and concentration profiles as well as for the local skin friction, Nusselt number and Sherwood number.  相似文献   

12.
李逸翔  汪球  罗凯  李进平  赵伟 《力学学报》2021,53(9):2493-2500
高超声速飞行器强激波后高温气体形成具有导电性的等离子体流场, 电离气体为磁场应用提供了直接工作环境, 磁流体流动控制技术利用外加磁场影响激波后的离子或电子运动规律, 这可以有效改善高超声速飞行器气动特性. 激波脱体距离作为高超声速磁流体流动控制较为直观的气动现象, 受到研究者重点关注; 磁场添加后激波脱体距离发生变化, 其变化幅度直接反映磁控效果, 然而基于高超声速磁流体流动控制的相关理论模型较少, 需要进一步发展. 本文基于低磁雷诺数假设和偶极子磁场分布的条件, 通过对连续方程沿径向积分以及对动量方程采用分离变量的方法, 推导了高超声速磁流体流动控制下的球头激波脱体距离解析表达式. 理论分析结果表明, 激波脱体距离随着磁相互作用系数的增加而变大; 随着来流速度的增加, 磁相互作用系数变为影响激波脱体距离大小的主要因素. 本文理论模型可以达到快速评估磁控效果的目的, 对高超声速磁流体流动控制实验方案设计和结果分析具有一定的指导意义.   相似文献   

13.
The effect of MHD on steady two-dimensional laminar mixed flow about a vertical porous surface is numerically analyzed. Also the effects of radiation and heat generation and absorption are considered. A power law variation of temperature along the vertical wall is assumed. The nonlinear boundary-layer equations were transformed and the resulting differential equations were solved by an implicit finite difference scheme (Keller box method). Numerical results for the velocity distribution and the temperature distribution are presented for various values of Prandtl number Pr, magnetic parameter, porous medium parameter and internal heat generation or absorption coefficient. Further validation with previous works is carried out.  相似文献   

14.
A solution obtained by Fourier's method provides the basis for analyzing the influence of a narrow gas layer, of higher conductivity than the rest of the flow, on the Joule dissipation and current distribution in the terminal zone of a plane magnetohydrodynamic channel with nonconducting walls. The MHD interaction parameter, Reynolds magnetic number, and Hall parameter are assumed small. It is shown that a narrow, highly conductive layer can on occasions be replaced by a surface of discontinuity, on which well-defined relations between the electric quantities are satisfied. The presence of such a layer leads to an increase in the Joule dissipation and a reduction in the lengths of the current lines. A hopeful arrangement for a magnetohydrodynamic energy converter is one in which an inhomogeneous flow is used, consisting of a continuous series of alternating very hot and less hot zones [1,2]. For this arrangement, it is worth examining the influence of the stratified conductivity distribution of the working body on the Joule dissipation and the electric currents in the channel. Numerous papers have discussed the case of inhomogeneous conductivity in the context of MHD system electrical characteristics. A general solution was obtained in [3] for the stationary problem on the electric field in a plane MHD channel with nonconducting walls when the magnetic field and conductivity are arbitrary functions of the longitudinal coordinate. In [4], where the braking of undeformed conducting clusters was investigated, the Joule dissipation, linked with the appearance of closed eddy currents in the cluster as it enters and leaves the magnetic field, was evaluated. The relationships between the electrical quantities, on moving through a narrow layer of low-conductivity liquid, were considered in [5].Translated from Zhurnal Prikladnoi Mekhaniki i Tekhnicheskoi Fiziki, Vol. 9, No. 1, pp. 39–43, January–February, 1970.In conclusion, the author thanks A. B. Vatazhin for valuable advice and discussion.  相似文献   

15.
In Sezgin1,2 the problems considered are the magnetohydrodynamic (MHD) flows in an electrodynamically conducting infinite channel and in a rectangular duct respectively, in the presence of an applied magnetic field. In the present paper we extend the solution procedure of these papers to two rectangular channels connected by a barrier which is partially conductor and partially insulator. The problem has been reduced to the solution of a pair of dual series equations and then to the solution of a Fredholm's integral equation of the second kind. The infinite series obtained were transformed to finite integrals containing Bessel Junctions of the second kind to avoid the computations of slowly converging infinite series and infinite integrals with oscillating integrands. The results obtained compared well with those of Butsenieks and Shcherbinin3 which were obtained for the perfectly conducting barrier separating the flows.  相似文献   

16.
The flow behavior in non-parallel walls is an important factor of any physical model including cavity flow and canals, which is applicable for diverging/converging channel. The present communication explains that the flow of the hybrid nanomaterial subjected to the convergent/divergent channel has non-parallel walls. It is assumed that the hybrid nanomaterial movement is in the porous region. A Darcy-Forchheimer medium of porosity is considered to interpret the porosity features. A useful similarity function is adopted to get the strong ordinary coupled equations. Numerical solutions are achieved through the Runge-Kutta-Fehlberg(RKF) fourth-fifth order method, and they are validated with the existing results. Physical nature of the involving constraints is reported with the help of plots. It is explored that the velocity of divergent channel decreases, and convergent channel enhances for the higher solid volume faction. Further, the presence of inertia coefficient and porosity parameter amplifies the velocity at the wall.  相似文献   

17.
The MHD Couette flow of two immiscible fluids in a parallel plate channel in the presence of an applied electric and inclined magnetic field is investigated in the paper. One of the fluids is assumed to be electrically conducting, while the other fluid and the channel plates are assumed to be electrically insulating. Separate solutions with appropriate boundary conditions for each fluid are obtained and these solutions are matched at the interface using suitable matching conditions. The partial differential equations governing the flow and heat transfer are transformed to ordinary differential equations and closed-form solutions are obtained in both fluid regions of the channel. The results for various values of the Hartmann number, the angle of magnetic field inclination, the loading parameter and the ratio of the heights of the fluids are presented graphically to show their effect on the flow and heat transfer characteristics.  相似文献   

18.
During the motion of a partially ionized gas in magnetohydrodynamic channels the distribution of the electrical conductivity is usually inhomogeneous due to the cooling of the plasma near the electrode walls. In Hall-type MHD generators with electrodes short-circuited in the transverse cross section of the channel the development of inhomogeneities results in a decrease of the efficiency of the MHD converter [1]. A two-dimensional electric field develops in the transverse section. Numerical computations of this effect for channels of rectangular cross section have been done in [2, 3], At the same time it is advisable to construct analytic solutions of model problems on the potential distribution in Hall channels, which would permit a qualitative analysis of the effect of the inhomogeneous conductivity on local and integral characteristics of the generators. In the present work an exact solution of the transverse two-dimensional problem is given for the case of a channel with elliptical cross section stretched along the magnetic field. The parametric model of the distribution of the electrical conductivity of boundary layer type has been used for obtaining the solution. The dependences of the electric field and the current and also of the integral electrical characteristics of the generator on the inhomogeneity parameters are analyzed.Translated from Zhurnal Prikladnoi Mekhaniki i Tekhnicheskoi Fiziki, No. 1, pp. 3–10, January–February, 1973.  相似文献   

19.
MHD Couette flow in a channel with non-conducting walls, partially filled with a porous medium, is investigated in the presence of an inclined magnetic field in a rotating system. It is observed that the MHD flow behaviour in the channel has been influenced significantly by the Coriolis force, the hydromagnetic force with an inclusion of Hall current and the permeability of the porous medium. Effects of the parameters of these forces on the velocity distributions, induced magnetic field distributions and the skin friction have been depicted graphically and discussed.  相似文献   

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