期刊文献+

电场与流场耦合作用的研究及应用现状

Development of Research on the Coupled Property of Electric Field and Flow Field
下载PDF
导出
摘要 电场与流场耦合作用是电动力学与流体力学知识的交叉,其研究属于交叉学科的研究范畴。在工农业生产实践中,经常会出现电场与流场耦合作用的工况。因此,对电场与流场耦合作用的理论研究显得比较重要。此外,电场与流场耦合作用所产生的效应,得到了一定应用,如强化换热、电流体泵以及电雾化技术等。对电场与流场耦合作用的基本理论及其数学模型做了简单的描述,并对其在理论方面的研究现状做了详细深入的分析;对电场与流场耦合作用的应用研究情况做了详细深入的比较分析。 The theory of coupled performance of electric field and flow field is an interdisciplinary theory of electrodynamics and hydrodynamic. The condition of flow field and electric field coupled working often happen in the industrial and agricultural production practices. It is important to research the couple theory of the electric field and flow field. The effect of electric field and flow field couple working is applied widely, such as heat transfer enhancement, electrohydrodynamic pump, electrohydrodynamic spraying, etc. This article describes the basic theory and mathematical model of the coupled working of electric field and flow field, analysis on the development about the theory of electric field and flow field coupled working and the application of the coupled working of the electric field and flow field.
出处 《东北电力大学学报》 2014年第3期14-20,共7页 Journal of Northeast Electric Power University
基金 东北电力大学博士科研启动基金项目(BSTXM-201306)
关键词 电场 流场 强化换热 电流体泵 电雾化 Electric field Flow field Heat transfer enhancement Electrohydrodynamic pump Electrohydrody-namic spraying.
  • 相关文献

参考文献38

  • 1A. Castellanos. Coulomb-driven Convection in Electrohydrodynamics [ J ]. IEEE Transactions Electrical Insulation ,26 (6) :1201-1215.
  • 2A Castellanos, A Gonzalez. Nonlinear Electrohydrodynamics of Free Surfaces [ J ]. IEEE Transactions on Dielectrics and Electrical Insulation, 1998,6/5 (3) :334-343.
  • 3J. A. DELFO, S. WHITAKER, Electro- hydrodynamics in porous media [ J ]. Transport in Porous Media, 2011,44 : 385-405.
  • 4P A Vazquez, G E Georghiou, A Castellanos. Numerical analysis of the stability of the electrohydrodynamic (EHD) electroconvection between two plates [ J ]. Journal of Physics D :Applied Physics ,2008,41 ( 17 ) :287-291.
  • 5Gulsum Ersoy,A Kerem Uguz. Electro-hydrodynamic instability in a microchannel between a Newtonia and a non-Newtonia liquid[ J]. Fluid Dynamics Research ,2012,44(3) :32-36.
  • 6C Kim, J H Wang. The effect of charge mode transition on electrohydrodynamic flow in a multistage negative air corona discharge [ J ]. Journal of Physics : Applied Physics,2012,45:67-71.
  • 7Dirk langemann, Modelling a droplet moving in a electric field. Mathematics and Computers in Simulation . 200568:157-169.
  • 8A M onkengue Imano, A. Beroual. Deformation of water droplet on solid surface in electric field [ J ]. Colloid and Interface Science. 2006,298: 869-879.
  • 9Babak Vajdi Hokmadbad, a experimental investigation on hydrodynamic of charged water droplets in dielectric liquid medium in the presence of electric field [J]. Colloids and Surfaces A : Physicochemical and EngineeringAspects. 2012,401 ( 3 ) : 17-28.
  • 10Horald Songoro,Erion Gjonaj. Thomas Wiland. Computational modeling of water droplet Deformation in strong electric field [ C ]. ICE AA, 2012,9:333-336.

二级参考文献73

共引文献37

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部