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1.
为了利用超导块体的完全抗磁性与敏感线圈的电感变化测量重力梯度,需要对敏感线圈的电磁特性进行分析.利用盘状超导敏感线圈产生磁场,首先分析单匝线圈在场点产生的磁感应强度,再通过叠加得到场点的总磁感应强度.选取设计参数对线圈外小间距范围内的磁感应强度进行计算可知,径向分量沿线圈径向保持稳定值,而轴向分量变化较大.质量块对总磁...  相似文献   

2.
轴向磁场磁通切换型永磁(AFFSPM)电机是一种轴向长度短、转矩密度高的新型永磁电机。该电机磁场呈三维分布,与径向磁场电机不同,需要对该电机进行三维有限元分析,从而增加了电机分析和优化时的计算时间和成本。基于等效磁路法分析了AFFSPM电机的静态特性,建立了AFFSPM电机的非线性等效磁路模型,采用该模型计算、分析了气隙磁密、空载永磁磁链、反电动势和电感等特性,并与采用三维有限元方法的计算结果进行比较,验证了AFFSPM电机等效磁路模型的准确性,表明等效磁路模型适用于AFFSPM电机初始设计和分析。  相似文献   

3.
磁场强度及位形对霍尔推力器放电过程有显著影响。根据霍尔推力器通道尺寸和等离子体放电过程建立二维物理模型,采用粒子模拟方法,研究了不同磁场强度及位形等离子体放电特性,讨论了推力、推功比及放电电流的变化规律。模拟表明:当中轴线磁场强度峰值小于200G时,磁场对电子轴向传导约束减弱;当磁场强度峰值在200G~420G时,电子温度、电离率及电子与壁面碰撞频率降低,出口处离子径向速度增大,壁面腐蚀增加;当磁场强度峰值为280G时,加速区最短,放电电流最小。不同零磁点磁场位形会改变通道电离区和加速区位置,影响推力器放电性能。  相似文献   

4.
The auroral zone ionosphere is coupled to the outer magnetosphere by means of field-aligned currents. Parallel electric fields associated with these currents are now widely accepted to be responsible for the acceleration of auroral particles. This paper will review the theoretical concepts and models describing this coupling. The dynamics of auroral zone particles will be described, beginning with the adiabatic motions of particles in the converging geomagnetic field in the presence of parallel potential drops and then considering the modifications to these adiabatic trajectories due to wave-particle interactions. The formation of parallel electric fields can be viewed both from microscopic and macroscopic viewpoints. The presence of a current carrying plasma can give rise to plasma instabilities which in a weakly turbulent situation can affect the particle motions, giving rise to an effective resistivity in the plasma. Recent satellite observations, however, indicate that the parallel electric field is organized into discrete potential jumps, known as double layers. From a macroscopic viewpoint, the response of the particles to a parallel potential drop leads to an approximately linear relationship between the current density and the potential drop.The currents flowing in the auroral circuit must close in the ionosphere. To a first approximation, the ionospheric conductivity can be considered to be constant, and in this case combining the ionospheric Ohm's Law with the linear current-voltage relation for parallel currents leads to an outer scale length, above which electric fields can map down to the ionosphere and below which parallel electric fields become important. The effects of particle precipitation make the picture more complex, leading to enhanced ionization in upward current regions and to the possibility of feedback interactions with the magnetosphere.Determining adiabatic particle orbits in steady-state electric and magnetic fields can be used to determine the self-consistent particle and field distributions on auroral field lines. However, it is difficult to pursue this approach when the fields are varying with time. Magnetohydrodynamic (MHD) models deal with these time-dependent situations by treating the particles as a fluid. This class of model, however, cannot treat kinetic effects in detail. Such effects can in some cases be modeled by effective transport coefficients inserted into the MHD equations. Intrinsically time-dependent processes such as the development of magnetic micropulsations and the response of the magnetosphere to ionospheric fluctuations can be readily treated in this framework.The response of the lower altitude auroral zone depends in part on how the system is driven. Currents are generated in the outer parts of the magnetosphere as a result of the plasma convection. The dynamics of this region is in turn affected by the coupling to the ionosphere. Since dissipation rates are very low in the outer magnetosphere, the convection may become turbulent, implying that nonlinear effects such as spectral transfer of energy to different scales become important. MHD turbulence theory, modified by the ionospheric coupling, can describe the dynamics of the boundary-layer region. Turbulent MHD fluids can give rise to the generation of field-aligned currents through the so-called -effect, which is utilized in the theory of the generation of the Earth's magnetic field. It is suggested that similar processes acting in the boundary-layer plasma may be ultimately responsible for the generation of auroral currents.  相似文献   

5.
电力作动器中永磁容错电机的电感和谐波分析   总被引:4,自引:1,他引:3  
 针对永磁容错电机大漏感的特点,利用磁矢量有限元法对六相十极永磁容错电机进行分析,得出其绕组自感的组成成分,尤其是电机内漏感分布;同时建立六相十极永磁容错电机的磁路模型,利用磁路法推导出较高精度的绕组自感及其组成部分的解析式,通过有限元验证,该解析式的计算精度在5.6%以内。此解析式可推广到一般的永磁容错电机中去,进而为永磁容错电机的初始设计和性能分析提供了理论依据。最后,对永磁容错电机内谐波漏感进行了量化分析,为后续的电机控制及其热分析打下基础。  相似文献   

6.
根据磁阻型电磁发射原理及驱动线圈内部磁场分布情况,推导了基于线性化电感的发射体运动模型,给出了一个用于计算发射体在线圈中的受力和加速情况的简化方法,并归纳了部分影响因素。使用ANSYS Maxwell仿真软件对不同形状发射体在线圈中的受力变化进行仿真分析。研究结果为实际磁阻型电磁发射中应用的发射体形状设计提供了参考。  相似文献   

7.
黄护林  张炎 《航空动力学报》2007,22(8):1209-1215
根据磁场作用下等离子体的湍流和传热能力将受到抑制的现象, 提出利用磁场控制低温等离子体隔离高温燃气与喷管壁的方法, 以减少高温燃气对壁面的传热, 从而达到降低壁面温度的目的.分别建立诱导磁场方程求解洛伦兹力和磁场作用下的k-ε湍流模型求解湍流粘度, 数值模拟了不同强度磁场作用下的磁控等离子体流动和传热特性.结果表明, 磁场能够有效地抑制湍流强度, 降低传热能力, 从而有效地降低壁面温度;并且磁场越强, 效果越明显.   相似文献   

8.
This article summarizes and aims at comparing the main features of the induced magnetospheres of Mars, Venus and Titan. All three objects form a well-defined induced magnetosphere (IM) and magnetotail as a consequence of the interaction of an external wind of plasma with the ionosphere and the exosphere of these objects. In all three, photoionization seems to be the most important ionization process. In all three, the IM displays a clear outer boundary characterized by an enhancement of magnetic field draping and massloading, along with a change in the plasma composition, a decrease in the plasma temperature, a deflection of the external flow, and, at least for Mars and Titan, an increase of the total density. Also, their magnetotail geometries follow the orientation of the upstream magnetic field and flow velocity under quasi-steady conditions. Exceptions to this are fossil fields observed at Titan and the near Mars regions where crustal fields dominate the magnetic topology. Magnetotails also concentrate the escaping plasma flux from these three objects and similar acceleration mechanisms are thought to be at work. In the case of Mars and Titan, global reconfiguration of the magnetic field topology (reconnection with the crustal sources and exits into Saturn??s magnetosheath, respectively) may lead to important losses of plasma. Finally, an ionospheric boundary related to local photoelectron signals may be, in the absence of other sources of pressure (crustal fields) a signature of the ultimate boundary to the external flow.  相似文献   

9.
高温气体效应会严重影响高温气体流场的流动特性,进而影响高超声速磁流体控制效率。基于低磁雷诺数假设,通过耦合求解带电磁源项的三维Navier-Stokes流场控制方程和电场泊松方程,开展完全气体模型、平衡气体模型、化学非平衡气体模型、热化学非平衡气体模型等条件下的高超声速磁流体控制数值模拟,分析气体模型对磁流体控制的影响,研究高温气体各种非平衡效应及焦耳热振动能量配比等对高超声速磁流体控制的影响规律。研究表明:化学非平衡效应对高超声速磁流体控制影响显著,采用化学非平衡气体模型模拟得到的磁控增阻特性介于完全气体模型和平衡气体模型之间,平衡气体和完全气体模型磁控热流变化的定性规律,与非平衡气体模型模拟结果差异很大;热力学非平衡效应对高超声速磁流体控制的影响,与焦耳热振动能量作用比率紧密相关,随该配比增大,磁场增阻效果由67%降到约12%;高温气体效应会极大地降低磁控增阻效果,会明显地增强部分表面区域的磁控热流减缓效果,要准确数值模拟高超声速磁流体控制,必须有效地考虑化学和热力学非平衡效应,同时选用接近实际情况的焦耳热振动能量配比。  相似文献   

10.
辉光放电等离子体对边界层流动控制的机理研究   总被引:6,自引:1,他引:6  
本文求解电位势方程得到电场分布,假定电场强度大于击穿阈值的区域为等离子体区,给定电荷密度,得到了作用于流体上的电场力。通过求解带源项的NS方程,研究了一个大气压下的均匀辉光放电等离子体对边界层流动的影响,考察了电场力做功对流动的影响。本文研究结果同文献[6]一致,即电场力总体上使边界层流动加速。另外,电场力做功对流动参数的影响可以忽略。文献[6]给出的线化电场模型和本文得到的电场相比,具有较大的差别,该差别引起了流动参数显著差别。  相似文献   

11.
磁控热防护技术在高超声速领域显现出广泛的应用前景。考虑高超声速流动磁流体力学控制涉及的等离子体生成机制、多电离组分导电机理以及电磁流动能量/动量输运机制,通过耦合求解电磁场泊松方程和带电磁源项的高温热化学非平衡流动控制方程组,搭建了高超声速磁控热防护数值模拟平台。结合美国航天飞机"哥伦比亚"号(OV-102)近似外形和5种磁场配置方案,较为系统地开展了磁控热防护系统在高超声速"滑翔返回式"天地往返运载器上的应用仿真研究。结果表明:搭建的磁控热防护仿真平台具备偶极子磁场、均匀磁场、螺线管磁场及多个磁场组合条件下复杂外形飞行器气动热环境数值模拟能力,其校验结果与文献或飞行试验数据符合较好;采用合适的磁场配置能有效降低航天飞机的表面热流,显著改善了航天飞机的气动热环境,典型状态的表面热流下降25%以上;局部磁场方向与流动方向的夹角,在一定程度上决定了洛伦兹力的强度和方向,对磁控效果的影响明显。  相似文献   

12.
Fahr  H. J.  Neutsch  W.  Grzedzielski  S.  Macek  W.  Ratkiewicz-Landowska  R. 《Space Science Reviews》1986,43(3-4):329-381
Existing heliopause models are critically rediscussed under the new aspect of possible plasma mixing between the solar wind and the ambient ionized component of the local interstellar medium (LISM). Based on current kinetic plasma theories, effective diffusion rates across the heliopause are evaluated for several models with turbulence caused by electrostatic or electromagnetic interactions that could be envisaged in this context. Some specific cases that may lead to high diffusion rates are investigated, especially in regard to their LISM magnetic field dependence.For weak fields (less than 10–7 G), macroscopic hydrodynamic instabilities, such as of Rayleigh-Taylor or Kelvin-Helmholtz-types, can be excited. The resulting plasma mixing rates at the heliopause may amount to 20–30% of the impinging mass flow.Recently, an unconventional new approach to the problem for the case of tangential magnetic fields at the heliopause was published in which a continuous change of the plasma properties within an extended boundary layer is described by a complete set of two-fluid plasma equations including a hybrid MHD-formulation of wave-particle interaction effects. If a neutral sheet is assumed to exist within the boundary layer, the magnetic field direction is proven to be constant for a plane-parallel geometry. Considering the electric fields and currents in the layer, an interesting relationship between the field-reconnection probability and the electric conductivity can be derived, permitting a quantitative determination of either of these quantities.An actual value for the electrical conductivity is derived here on the basis of electron distribution functions given by a superposition of Maxwellians with different temperatures. Using two-stream instability theory and retaining only the most unstable modes, an exact solution for the density, velocity, and magnetic and electric fields can be obtained. The electrical conductivity is then shown to be six orders of magnitude lower than calculated by conventional formulas. Interestingly, this leads to an acceptable value of 0.1 for the reconnection coefficient.By analogy with the case of planetary magnetopauses, it is shown here for LISM magnetic fields of the order of 10–6 G or larger that field reconnection processes may also play an important role for the plasma mixing at the heliopause. The resulting plasma mixing rate is estimated to amount to an average value of 10% of the incident mass flow. It is suggested here that the dependence of the cosmic-ray penetration into the heliosphere on the distribution of reconnecting areas at the heliopause may provide a means of deriving the strength and orientation of the LISM field.A series of observational implications for the expected plasma mixing at the heliopause is discussed in the last part of the paper. In particular, consequences are discussed for the generation of radio noise at the heliopause, for the penetration of LISM neutrals into the heliosphere, for the propagation of cosmic rays towards the inner part of the solar system and for convective electric field mergings into the heliosphere during the course of the solar cycle, depending on the solar cycle variations. With concern to a recent detection of electrostatic plasma waves by plasma receivers on Voyagers 1 and 2, we come to an interesting alternate explanation: the heliopause, rather than the heliospheric shock front, could be responsible for the generation of these waves.  相似文献   

13.
This paper reviews the present state of knowledge about the magnetic fields and the plasma interactions associated with the major satellites of Jupiter and Saturn. As revealed by the data from a number of spacecraft in the two planetary systems, the magnetic properties of the Jovian and Saturnian satellites are extremely diverse. As the only case of a strongly magnetized moon, Ganymede possesses an intrinsic magnetic field that forms a mini-magnetosphere surrounding the moon. Moons that contain interior regions of high electrical conductivity, such as Europa and Callisto, generate induced magnetic fields through electromagnetic induction in response to time-varying external fields. Moons that are non-magnetized also can generate magnetic field perturbations through plasma interactions if they possess substantial neutral sources. Unmagnetized moons that lack significant sources of neutrals act as absorbing obstacles to the ambient plasma flow and appear to generate field perturbations mainly in their wake regions. Because the magnetic field in the vicinity of the moons contains contributions from the inevitable electromagnetic interactions between these satellites and the ubiquitous plasma that flows onto them, our knowledge of the magnetic fields intrinsic to these satellites relies heavily on our understanding of the plasma interactions with them.  相似文献   

14.
磁场位形和通道尺度会改变霍尔推力器等离子体放电过程,影响推力器的宏观放电特性。为分析磁场和通道宽度对推力器放电性能的影响规律,本文针对霍尔推力器轴对称通道结构和放电物理过程建立2D3V物理模型,采用粒子模拟方法研究了霍尔推力器磁零点磁场位形不同通道宽度的电势、粒子数密度、电子温度、电离速率、比冲及推功比的变化规律,结果表明:在具有磁零点磁场位形下,随着通道宽度增加,通道出口处电势降增加,加速区缩短,离子径向速度减少,壁面腐蚀降低;当磁零点位置在内壁面,推力器通道宽度由14 mm增加到16 mm时,推力器比冲和推功比增大,推力器放电效率提高;当磁零点位置在通道中轴线或外壁面,且通道宽度大于14 mm时,推力器比冲增大,推功比减小,推力器效率下降。  相似文献   

15.
This article is devoted to experimental study on the control of the oblique shock wave around the ramp in a low-temperature supersonic flow by means of the magnetohydrodynamic(MHD) flow control technique. The purpose of the experiments is to take advantage of MHD interaction to weaken the oblique shock wave strength by changing the boundary flow characteristics around the ramp. Plasma columns are generated by pulsed direct current(DC) discharge, the magnetic fields are generated by Nd-Fe-B rare-earth permanent magnets and the oblique shock waves in supersonic flow are generated by the ramp. The Lorentz body force effect of MHD interaction on the plasma-induced airflow velocity is verified through particle image velocimetry(PIV) measurements. The experimental results from the supersonic wind tunnel indicate that the MHD flow control can drastically change the flow characteristics of the airflow around the ramp and decrease the ratio of the Pitot pressure after shock wave to that before it by up to 19. 66%, which leads to the decline in oblique shock wave strength. The oblique shock waves in front of the ramp move upstream by the action of the Lorentz body force. The discharge characteristics are analyzed and the MHD interaction time and consumed energy are determined with the help of the pulsed DC discharge images. The interaction parameter corresponding to the boundary layer velocity can reach 1. 3 from the momentum conservation equation. The velocity of the plasma column in the magnetic field is much faster than that in the absence of magnetic field force. The plasma can strike the neutral gas molecules to transfer momentum and accelerate the flow around the ramp.  相似文献   

16.
张炎  黄护林 《航空动力学报》2008,23(6):1024-1030
采用诱导磁场方程,Mixture混合两相流和磁场修正的湍流两方程模型,研究施加不同强度磁场时,收敛喷管内等离子体的流动和传热特性以及等离子体对尾喷流的包裹情况.结果表明,随着气流在收敛喷管内加速,等离子体被掺混的程度增加.增强磁场可提高近壁面处等离子体体积分数,抑制其湍流度,降低高温气体向喷管壁面的传热.当By=1.3T时,磁控等离子体可降低54.4%的壁面温升,增加0.74%的喷管推力系数,在出口4倍当量直径处对尾气仍有一定的包裹.   相似文献   

17.
郝振洋  胡育文  黄文新  余文涛 《航空学报》2009,30(11):2156-2171
 以六相十极永磁容错电机(FTPMM)为例,通过对电机中磁力线分布的分析,得出FTPMM绕组自感的各个主要组成部分,即激磁感、谐波漏感、槽口漏感和槽内漏感,并分析出FTPMM的大电感是通过增加槽口漏感和谐波漏感来实现的。为提高电机优化设计的正确性,提出了新的磁路模型,并引入槽口磁压降参数和槽口计算厚度参数,得出了具有高精度的非线性绕组自感及其组成部分的解析式。最后通过有限元法(FEM)及实验验证,该解析式的精度在13%以内,并且电机具有很强的容错能力,对永磁容错电机的优化设计和性能分析有理论指导意义。  相似文献   

18.
Dynamics play an important role in defining the characteristics of the Venus ionosphere. The absence of a significant internal magnetic field at Venus allows the ionization to respond freely to gradients in the plasma pressure. The primary response to a gradient in plasma pressure is the nightward flow of the ionization away from a photoionization source on the dayside. The flow is approximately symmetric about the Sun-Venus axis and provides the source of O+ that maintains the nightside ionosphere during solar maximum. Modelling efforts have generally been successful in describing the average nightward ion velocity. Asymmetric and temporally-variable flow is measured, but is not well described by the models. Departures from axially-symmetric flow described in this paper include ionospheric superrotation at low altitudes and an enhanced flow at high altitude at the dawn terminator. Variability that is the result of changes in the ionopause height induced by changes in solar wind dynamic pressure is especially strong on the nightside. Ion flow to the nightside is also reduced during solar minimum because of a depressed ionopause.  相似文献   

19.
超磁致伸缩电静液作动器磁场分析与优化   总被引:1,自引:0,他引:1  
提出一种超磁致伸缩电静液作动器(GMEHA)结构,采用永磁体与控制线圈组合提供驱动磁场.首先建立了该组合磁路数学模型,并给出了超磁致伸缩棒内磁感应强度计算解析式;其次,对以上结构进行了有限元分析(FEA),得出了磁路主要结构参数与磁场分布均匀性之间映射规律;最后进行了作动器磁场试验研究并与有限元分析结果进行了对比,验证了理论与有限元模型的可预测性,给出了该电静液作动器结构设计方法.结果表明:该电静液作动器的最佳驱动频率为250Hz,最大无负载体积流量为0.85L/min,最大阻断力达到了120N.   相似文献   

20.
To investigate the deflection effect of gas plasma plume controlled by magnetic field, a novel experimental scheme was presented. The Cs2CO3 catalytic ionization seeds were injected into the combustion chamber to obtain gas plasma on a high temperature magneto hydrodynamic (MHD) experiment rig. The plasma jet was deflected under the action of an external magnetic field, resulting in a thrust-vector effect. Particle image velocimetry (PIV) collected two-dimensional images of jet flow field. Through image processing and velocity vector analysis, the jet deflection angle can be obtained quantitatively. At 1800-2500K, the jet deflection was verified experimentally under the condition of 0.45T magnetic field strength. The results indicate that the jet deflection angle increases gradually with the increase of gas temperature, and above 2200K, the jet deflection angle increase obviously. In the process of gas plasma jet, it is feasible to realize the jet deflection controlled by MHD by adding an external magnetic field.  相似文献   

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