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1.
利用实验手段研究了双管式电弧等离子体发生器的特性,包括旋流进气特性、伏安特性和运行热效率等,建立了基于双管式电弧等离子体发生器的数学模型。结果表明,旋流流速对电极烧蚀速率有较大影响,电弧电压降和发生器热效率随电流增加而下降,发生器热效率随气流量增大而增大。根据相似理论建立的数学模型能够准确模拟等离子体发生器的负电弧动态电阻伏安特性。以上研究可为大功率、长寿命双管式电弧等离子体发生器的开发及其在材料制备和环境保护领域的应用提供参考。  相似文献   

2.
采用二维轴对称双温度化学非平衡(2T-NCE)模型,模拟了带有水冷约束管的大气压直流电弧氩等离子体发生器.得出了不同工作参数下等离子体中电子温度、重粒子温度的变化关系,表明直流电弧等离子体有很强的非平衡特性,且变化规律十分明显.  相似文献   

3.
针对自主设计的等离子体发生器,通过实验分析了常压下等离子热射流形态的发展状况,并对常压下的空气放电特性进行了数值模拟,以等离子发生器为原型,将等离子电弧的电场、磁场、温度场以及速度场进行了直接耦合计算,得到了等离子体电弧的速度场和温度场的分布情况. 针对不同间隙对放电结果的影响进行了分析,结果表明,放电间隙由1.5 mm增大到3.5 mm时,热射流速度由41.5 m/s增大到62.4 m/s,温度由3 650 K降低到1 960 K. 当间隙过窄时,温度过高将会烧蚀电极,影响电极使用寿命.   相似文献   

4.
明章健  兰涛  李弘  谢锦林  刘阿棣  刘万东 《物理学报》2015,64(11):115201-115201
在碰撞等离子体中使用单探针测量系统测得的伏安特性曲线会发生畸变. 实验中分别测量了非碰撞条件下(20 Pa)和碰撞条件下(400 Pa)氩气(Ar)电感耦合等离子体的单探针伏安特性曲线, 并进一步通过在400 Pa下测量不同位置处的单探针伏安特性曲线和引入干扰电极调节整体电中性约束的程度的方法来分析研究曲线的畸变现象. 结果表明碰撞等离子体中整体电中性约束条件会对非碰撞探针测量系统进行约束, 并通过理论分析和实验证明:在单探针测量过程中, 以真空室壁为电位参考点, 等离子体将通过改变自身等离子体电位来满足整体电中性的要求, 此时, 单探针测得的伏安特性曲线就不是理论上的单探针的鞘层伏安特性.  相似文献   

5.
Langmuir探针是诊断等离子体参数的重要手段.报道了在氩气射顿(13.56MHz)辉光放电等离子体中使用调谐单探针进行诊断,对探针I-V特性曲线的统计噪声进行了数字滤波的光滑化处理,而后求二次微商.在相同的放电条件下,使用自行设计的微分电路,对探针特性二次微商进行在线测量.这两种方法得到的二次微商结果能够较好地符合.  相似文献   

6.
真空电弧的特性直接受到从阴极斑点喷射出的等离子体射流的影响,对等离子体射流进行数值仿真有助于我们深入了解真空电弧的内部物理机制.然而,磁流体动力学和粒子云网格仿真方法受限于计算精度和计算效率的原因,无法有效地应用于真空电弧等离子体射流仿真模拟.本文开发了一套三维等离子体混合模拟算法,并在此基础上建立了真空电弧单阴极斑点射流仿真模型,模型中将离子作宏粒子考虑,而电子作无质量流体处理,仿真计算了自生电磁场与外施纵向磁场作用下等离子体的分布运动状态.仿真结果表明,单个阴极斑点情况下真空等离子体射流在离开阴极斑点后扩散至极板间,其整体几何形状为圆锥形,离子密度从阴极到阳极快速下降.外施纵向磁场会压缩等离子体,使得等离子体射流径向的扩散减少并且轴线上的离子密度升高.随着外施纵向磁场的增大,其对等离子体射流的压缩效应增强,表现为等离子体射流的扩散角度逐渐减小.此外,外施纵向磁场对等离子体射流的影响也受到电弧电流大小的影响,压缩效应随电弧电流的增加而逐渐减弱.  相似文献   

7.
马廷彪  陈里昂  徐铭铭  陈辉  葛国伟  程显 《强激光与粒子束》2021,33(6):065013-1-065013-7
真空断路器开断过程中弧后残余等离子体是表征其开断性能的重要参量。基于探针电子饱和区域工作原理,提出了一种真空电弧弧后残余等离子体电子密度测量方法,分析了其结构和工作原理。设计了探针诊断系统的探针结构和控制系统,基于可拆卸真空腔体进行了残余等离子体电子密度的单探针测量实验,采用高速相机观测电弧发展演变过程,研究了电流大小、触头结构等参数对残余等离子体衰减过程的影响。通过前人其他诊断方法对比验证了该测量方法的有效性,为后续真空断路器弧后微观特性研究提供了一种低成本、有效的诊断方法。  相似文献   

8.
电弧等离子体是通过电极之间击穿放电,产生热电弧,实现对冷态介质加热,目前大功率的电弧等离子体发生器在航空航天领域有重要的应用,是国内外开展飞行器防热材料筛选和考核研究最重要的地面模拟试验设备.本研究基于发展的高焓气流非接触式光谱诊断方法,开展对10 MW量级大功率长分段电弧加热器起弧过程流场特性的定量、定性研究,在线测...  相似文献   

9.
搭建了双丝脉冲MIG焊接试验系统,为了分析研究双丝脉冲MIG焊接的热源耦合机理以及电弧温度场,采用光谱技术对其电弧进行了诊断分析,采用中空探针法进行等离子体的辐射采集,得到电弧等离子体的光信号,利用Boltzmann图法计算了双丝脉冲MIG焊接电弧等离子体的电子温度,得出了电弧等离子体的电子温度分布规律,并结合电信号采集和高速摄像技术对电弧进行了综合分析。研究创新之处在于结合了电弧的高速摄像图片信息和电弧等离子体的光信号对双电弧耦合机理进行分析,对电弧温度场进行了较为直观的分析研究。试验结果表明,在本试验条件下焊接过程实现了推挽式输出,实现了一脉一滴的过渡方式;两个电弧在焊接过程中在磁场的作用下相互吸引,向中心发生了偏移,在双电弧的几何中心形成了新的热源中心,并且电弧发生上飘现象;双电弧电子温度整体呈倒V型分布,在双电弧几何中心位置,距工件表面3 mm的位置电弧电子温度最高,为16 887.66 K,比最低温度11 963.63 K高大约4 900 K。  相似文献   

10.
Langmuir探针是诊断等离子体参数的重要手段.报道了在氩气射顿(13.56MHz)辉光放电等离子体中使用调谐单探针进行诊断,对探针I-V特性曲线的统计噪声进行了数字滤波的光滑化处理,而后求二次微商.在相同的放电条件下,使用自行设计的微分电路,对探针特性二次微商进行在线测量.这两种方法得到的二次微商结果能够较好地符合. 关键词: Langmuir探针 二次微商 数值滤波 微分电路  相似文献   

11.
利用发射光谱方法对真空弧离子源放电等离子体特性进行了诊断。同时,基于局域热力学平衡等离子体的发射光谱理论,建立了等离子体的发射光谱拟合模型,对真空弧放电等离子体光谱进行了分析。针对TiH真空弧离子源,分别对330~340nm与498~503nm范围内Ti+离子与Ti原子的发射光谱进行了对比拟合,获得了较好的符合度,解决了传统Boltzmann斜率法计算等离子体温度需要孤立的不受附近谱线干扰的线状光谱的困难。最后,利用该方法计算了真空弧离子源在不同放电条件下的等离子体发射光谱、等离子体密度与温度参数。结果表明,TiH真空弧放电等离子体温度在1eV左右,同时,放电所产生的氢原子要远远大于金属原子,并且随着真空弧离子源馈入功率的增加,TiH电极中解吸附出来的氢比蒸发出来的金属增加得更多,这有利于TiH离子源在中子发生器方面的应用。  相似文献   

12.
Plasmas produced in a wall stabilized arc in mixtures of argon and nitrogen, containing different amounts of these elements have been studied. The plasma composition turns out to be very important to the process of demixing in radial direction. In plasmas containing mainly argon, the argon mass fraction reveals a local minimum on the arc axis while in plasmas containing large amount of nitrogen the argon mass fraction have a maximum on the arc axis. The increase of nitrogen amount in Ar–N plasma influences the radial temperature profile causing a decrease of the temperature in plasma layers close to the stabilizing wall and an increase on the axis of plasma column. (© 2008 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

13.
Plasma of electric arc discharge between melted electrodes was experimentally investigated. Diagnostics of electric arc plasma was carried out. Optical emission and absorption spectroscopy was used to obtain radial profiles of temperature, electron density and neutral atoms concentration. The influence of electrode condition on plasma parameters was evaluated. It was found that the copper vapour in plasma tends to be located at the arc axis.  相似文献   

14.
The application of the Lorentzian plasma theory for the calculation of the properties of multicomponent electric arc plasma is considered. It is shown that this model gives satisfactory results in the temperature range, which is corresponding to the weakly ionized arc plasma and arc plasma with dominant first ionization. The calculations are provided for the arc plasmas of noble gases and their mixtures between them and also that with metals. It is also pointed that the discrepancy between the electron temperature and gas temperature can be significant even at relatively weak electric fields, that fact must be taken into account under the simulation of arc discharges.  相似文献   

15.
The gyrocenter shift phenomenon explained the mechanism of radial electric field formation at the high confinement mode transition in fusion devices. This Letter reports that the theory of gyrocenter shift is also applicable to low temperature high collisional plasmas such as arc discharges by the generalization of the theory resulting from a short mean free path compared with the gyroradius. The retrograde motion of cathode spots in the arc discharge is investigated through a model with the expanded formula of gyrocenter shift. It is found that a reversed electric field is formed in front of the cathode spots when they are under a magnetic field, and this reversed electric field generates a rotation of cathode spots opposite to the Amperian direction. The ion drift velocity profiles calculated from the model are in agreement with the experimental results as functions of magnetic flux density and gas pressure.  相似文献   

16.
Approximate analytic expressions for calculating the electron density in both steady and unsteady plasmas produced by pulsed electron beams are derived and proved to agree well with numerical calculations. It is shown that the algorithm for calculating the parameters of a nonequilibrium plasma in the channel of an MHD plasma generator depends on the type of generator. The effect of the magnetic field strength on the electron density and electric conductivity of the air plasma produced by an electron beam in the channel of a Faraday MHD generator is investigated. The influence of the parameters of the flow and ionizer on the efficiency of an MHD generator with a nonequilibrium conductivity is analyzed.  相似文献   

17.
The properties of atmospheric pressure arcs are investigated by means of electric exploration of plasma column and anode region. For the electrostatic probe technique, where the level of collisionality distorts the characteristic curve, data interpretation is difficult because no comprehensive underlying theory exists for the non-homogeneous electric arcs used in industry. Results are presented from an extended study of Langmuir probes applied to short, point-plane arcs. A multi-wire apparatus, operating for arc currents in the range 50-200 A is described and ion current densities and temperature maps are shown. The reduction of the probe determined temperature with respect to emission spectroscopy values is discussed and the cooling is ascribed to ion-electron recombination within the perturbation region formed around the probe. This region is investigated by means of emission spectroscopy and the extension found agrees both with numerical estimations and fast speed camera photographs. Diamond Like Carbon (DLC) partially coated wires can address data inversion problems and the role of arc flow directionality on charge capture and preliminary observations are shown. Charge capture and anode fall structure can be investigated using a split-anode technique. A prototype of a modified apparatus is described and preliminary results on the collected current are given.Received: 20 August 2003PACS: 52. Physics of plasmas and electric discharges - 52.80.Mg Arcs; sparks; lightning; atmospheric electricity - 52.70.-m Plasma diagnostic techniques and instrumentation  相似文献   

18.
The object of this study is to analytically determine the properties of an arc discharge generated by a combination of induction and d. c. electromagnetic fields. Induction power is supplied to the discharge by a solenoidal coil whose axis of symmetry is aligned with the applied d. c. electric field. A numerical technique is used to simultaneously solve a set of linear differential equations which include Maxwell's field equations, the single fluid energy equation, the momentum balance equation, Ohm's law, and the radiation diffusion equation. It is necessary to make a number of reasonable assumptions to obtain the final set of equations for programming. These assumptions restrict the calculations to azimuthally symmetric plasmas with axial gradients only in static pressure. In addition, the radiant energy flux is assumed to be isotropic within the plasma.  相似文献   

19.
Coefficients are calculated for the net emission of radiation per cc from the center of cylindrical isothermal plasmas of various temperatures and radii. Coefficients are given as a function of temperature and radius for the D lines of sodium vapor at 250 torr and for the continuum radiation of air at 1 and 30 atm. These coefficients are used in the Elenbaas Heller equation to derive temperature profiles of wall stabilized arcs e.g. for 4·5A with a radius of 0·35 cm in sodium vapor at 250 torr and 10,000 and 20,000A with a radius of 1 cm for air at 30 atm. Comparisons are made with calculated temperature profiles where self absorption effects and the radiation transfer are treated exactly, but still assuming thermodynamic equilibrium. It is found that the approximation using the net coefficients yields central arc temperatures and electric field strengths for a given arc current accurate to 10 per cent. Computation time for the approximate calculation is more than an order of magnitude less than for the calculation where radiation transfer is treated exactly. Thus the approximation facilitiates an account of line radiation for arc plasmas having complex spectra.  相似文献   

20.
A time-constant formula is derived from a perturbation analysis of an equilibrium energy-balance equation of arc plasmas. The formula gives the time constant associated with changes in arc quantities when the arc current is perturbed from its steady-state. The current perturbation is assumed to be very small and the mathematical approach assumes that the arc behavior is linear. This paper investigates how well a linear model describes the small-signal behavior of the arc. The derived formula gives an insight into which are properties are responsible for the dynamic behavior of the arc about its steady-state operating point. Application of the method has been illustrated with arcs in argon. Results calculated with the formula are compared to time-constants deduced from equilibrium model predictions of the decay in the electric field when the current is stepped  相似文献   

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