plasma generator

英 [ˈplæzmə ˈdʒenəreɪtə(r)] 美 [ˈplæzmə ˈdʒenəreɪtər]

网络  等离子体发生器; 等离子发电机; 等离子体产生器; 电浆产生器; 等离子发生器

电力



双语例句

  1. The eddy-dissipation-concept ( EDC) model is used to simulate the three-dimensional combustion process in a plasma generator.
    采用涡耗散概念(EDC)模型,对等离子发生器内三维湍流燃烧流场进行数值模拟。
  2. It could be equipped with Hypertherm plasma generator imported from America or plasma generator made in China as required by users;
    可根据客户要求配备美国原装进口海宝等离子发生器和国产等离子发生器。
  3. Study on plasma generator for detoxification of gaseous pollution
    用于气体消毒的等离子体发生器的研究
  4. Research of Related Problems of DBD Plasma Generator Power
    DBD等离子体发生器激励电源相关问题的研究
  5. It can be utilized to form small airborne plasma generator with wide absorption band, high absorption rate and optional response function.
    此方法具有吸收频带宽、吸收率高等特点,有望成为机载微型等离子体产生器件。
  6. Three-phase AC plasma generator
    三相交流等离子发生器
  7. The pulsed discharge properties of plasma generator are studied experimentally under natural environment.
    实验研究了自然环境压力条件下等离子体发生器的脉冲放电特性。
  8. DC high-voltage plasma generator
    直流高电压等离子发生器
  9. Diagnosis of flow field generated by a solid operation material plasma generator
    固体工质等离子体发生器流场参数的诊断
  10. The discharge and jet expansion characteristics of the pulsed plasma generator are investigated, which is beneficial to study the dynamic characteristics of transient pulsed plasma.
    通过研究初步掌握了脉冲等离子体发生器的放电特性和射流膨胀特性,对瞬态脉冲等离子体动力学特性研究具有一定的指导和参考价值。
  11. This paper used a finite-rate method to simulate the three-dimensional combustion process in a plasma generator.
    针对等离子点火器内三维湍流燃烧流场,采取有限速率化学反应模型,模拟其物理化学过程。
  12. Experimental Study on Confined High Pressure Arc Plasma Generator
    高压受限电弧等离子体发生器实验研究
  13. By means of resistance and capacitance coupled negative feedback method to control the plasma discharge development process and prevent the transition from glow discharge to spark discharge in a pin-to-plate static air plasma generator, a stable alternative current atmospheric glow discharge is produced successfully.
    在静态大气压空气针-板等离子体发生器中,采用阻容耦合负反馈方法控制等离子体放电发展过程,成功地抑制了辉光放电向火花放电的过渡,产生了稳定的交流辉光放电。
  14. The influences of discharge parameters of plasma generator on the combustion behavior of propellant were theoretically and experimentally studied.
    揭示了电热化学炮所用的等离子体发生器初始放电参数对推进剂燃烧特性的影响规律。
  15. The principle of power supply system of capillary plasma generator is introduced and the waveform of power is calculated.
    介绍一种新型的毛细管等离子体发生器电源系统的工作原理并计算了电流波形。
  16. Organization of Flow Field and Cooling of Electrode in Plasma Generator
    等离子发生器中流场的组织与电极冷却
  17. Briefly introduced the plasma ignition mechanism, the plasma generator principle of work.
    简要介绍了等离子点火机理和等离子发生器工作原理。
  18. The different plasma generator with different discharge efficiency is very important to performance of plasma ignition.
    不同结构的等离子体发生器放电效率不一样,对点火有很大影响。
  19. It consists of pulverized coal burner and plasma generator, water cooling system, air carrying system, flame inspection system, power supply, control and monitoring system, cold-boiler pulverizing system, etc.
    等离子点火装置主要由等离子煤粉燃烧器和等离子发生器、冷却水系统、载体风系统、火检系统、电源系统、控制监测系统、冷炉制粉系统等部分组成。
  20. The results suggest that the combustion behavior of propellant depends strongly on the discharge parameters of plasma generator.
    研究结果表明,推进剂的燃烧行为对等离子体发生器初始放电参数有较强的依赖性。
  21. There is a very important component in engine plasma ignition, its name is plasma generator.
    发动机的等离子点火系统中有一个重要部件就是等离子发生器。
  22. A flow dynamics model is established to describe the mechanisms of processes in plasma generator.
    建立了一个以局部热力学平衡、宏观电中性为基本假设的局部热力学平衡流体力学模型描述等离子发生器内部的流动、传热、传质过程;
  23. Characteristic Analysis and Controlling Principles on Power Supply of DC Arc Plasma Generator
    直流电弧等离子体发生器电源的特性分析及控制原理
  24. The influence of high loading density and plasma generator on performance of electrothermal chemical launch is also investigated in the paper.
    研究证实了高装填密度、等离子体发生器结构等因素对电热化学发射性能的影响。
  25. Uses turbulence diffuse combustion and simply PDF model to numerical simulation plasma generator combustion flow.
    用湍流扩散燃烧的简单概率密度函数模型对等离子发生器燃烧流场进行了数值模拟。
  26. The effects of the plasma generator parameters, tubular quartz dielectric barrier discharge reactor parameters, the inert gas and the porous material on the CO2 decompostion had been investigated.
    本文对介质阻挡放电等离子体技术用于二氧化碳的分解进行了研究,分别对等离子体发生器参数、管式石英介质阻挡放电反应器参数、添加惰性气体和多孔材料等因素对二氧化碳分解反应的影响进行了研究。
  27. Plasma generator is the main supply of plasma equipment.
    等离子体发生器是获得等离子体的主要供应设备。
  28. In order to solve the problem, parallel matching impedance is required between the voltage resource and plasma generator.
    为了解决这个问题,可以在等离子体发生器与交流电源之间增加一个匹配阻抗网络。
  29. Finally an experimental study is made to design and processes the plasma generator and the plasma ignition combustor.
    在此基础上设计制作等离子发生器和燃烧器进行了相关的实验研究。
  30. In the process of numerical simulation, establishing the geometric model of plasma generator, and meshing it, setting solution domains and boundary conditions.
    在数值模拟的过程中建立了等离子发生器的计算模型,并对其进行了网格划分、求解域和边界条件的设定。