• 中文核心期刊要目总览
  • 中国科技核心期刊
  • 中国科学引文数据库(CSCD)
  • 中国科技论文与引文数据库(CSTPCD)
  • 中国学术期刊文摘数据库(CSAD)
  • 中国学术期刊(网络版)(CNKI)
  • 中文科技期刊数据库
  • 万方数据知识服务平台
  • 中国超星期刊域出版平台
  • 国家科技学术期刊开放平台
  • 荷兰文摘与引文数据库(SCOPUS)
  • 日本科学技术振兴机构数据库(JST)

直流等离子体炬层流和湍流工况的数值模拟

Numerical Simulation of Fluid Flow and Heat Transfer in a DC Non-Transferred Arc Plasma Torch Operating Under Laminar and Turbulent Conditions

  • 摘要: 本文采用磁流体动力学 (MHD)模型对层流和湍流条件下直流电弧等离子体炬内部的流动和传热进行了数值模拟。通过对使用磁矢量势描述的电磁场方程组和修改后的流体动力学方程组的耦合迭代计算, 求解得到了电流密度、温度和速度等物理量等分布。本文在处理电极与流体之间的电流和传热时采用了流固耦合方法。本文所预测的弧电压和阳极弧根位置与实验结果非常接近。本文对质量流量和电流对等离子体炬出口参数、总体热效率、部件热损失的影响进行了详细分析, 得到了炬出口参数随质量流量和电流变化的规律, 研究还发现通过采用层流工况和减小阳极表面积等方法可以提高等离子体炬的总体热效率。

     

    Abstract: In this work, a magnetic fluid dynamics (MHD) model is used to simulate the electromagnetic field, heat transfer and fluid flow in a DC non-transferred arc plasma torch under laminar and turbulent conditions. The electric current density, temperature and velocity distributions in the torch are obtained through the coupled iterative calculation about the electromagnetic equations described in a magnetic vector potential format and the modified fluid dynamics equations. The fluid-solid coupled calculation method is applied to guarantee the continuity of the electric current and heat transfer at the interface between the electrodes and fluid. The predicted location of the anodic arc root attachment and the arc voltage of the torch are consistent with corresponding experimental results. Through a specific analysis of the influence of mass flow rates and electric current on the torch outlet parameters, the total thermal efficiency, thermal loss of each part, and the laws of the variation of outlet parameters with the variation of mass flow rates and electric current was obtained. It is found that operation under a laminar condition with a limited area of the anode could increase the total thermal efficiency of the torch.

     

/

返回文章
返回