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Electrohydrodynamic induction and conduction pumping of dielectric liquid film: Theoretical and numerical studies.

机译:介电液膜的电流体动力学感应和传导泵浦:理论和数值研究。

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摘要

Electrohydrodynamic (EHD) pumping of single and two-phase media is attractive for terrestrial and outer space applications since it is non-mechanical, lightweight, and involves no moving parts. In addition to pure pumping purposes, EHD pumps are also used for the enhancement of heat transfer, as an increase in mass transport often translates to an augmentation of the heat transfer. Applications, for example, include two-phase heat exchangers, heat pipes, and capillary pumping loops.; In this research, EHD induction pumping of liquid film in annular horizontal and vertical configurations is investigated. A non-dimensional analytical model accounting for electric shear stress existing only at the liquid/vapor interface is developed for attraction and repulsion pumping modes. The effects of all involved parameters including the external load (i.e. pressure gradient) and gravitational force on the non-dimensional interfacial velocity are presented. A non-dimensional stability analysis of EHD induction pumping of liquid film in a vertical annular configuration in the presence of external load for repulsion mode is carried out. A general non-dimensional stability criterion is presented. Stability maps are introduced allowing classification of pump operation as stable or unstable based on the input operating parameters.; An advanced numerical model accounting for the charges induced throughout the bulk of the fluid due to the temperature gradient for EHD induction pumping of liquid film in a vertical annular configuration is derived. A non-dimensional parametric study including the effects of external load is carried out for different entrance temperature profiles and in the presence of Joule heating.; Finally, a non-dimensional theoretical model is developed to investigate and to understand the EHD conduction phenomenon in electrode geometries capable of generating a net flow. It is shown that with minimal drag electrode design, the EHD conduction phenomenon is capable of providing a net flow. The theoretical model is further extended to study the effect of EHD conduction phenomenon for a two-phase flow (i.e. a stratified liquid/vapor medium). The numerical results presented confirm the concept of liquid film net flow generation with the EHD conduction mechanism.
机译:单相和两相介质的电液动力(EHD)泵对于地面和外层空间应用很有吸引力,因为它是非机械的,轻巧的并且不涉及运动部件。除了纯粹的泵送目的外,EHD泵还用于增强热传递,因为传质的增加通常会转化为热传递的增加。例如,应用包括两相热交换器,热管和毛细管泵送回路。在这项研究中,研究了EHD感应泵在环形水平和垂直配置下的液膜。针对吸引和排斥泵送模式,开发了一种仅考虑液体/蒸汽界面处存在的电剪切应力的无因次分析模型。提出了所有涉及的参数,包括外部载荷(即压力梯度)和重力对无量纲界面速度的影响。在存在外推力的情况下,在垂直环形配置下对液膜进行EHD感应泵送的无量纲稳定性分析。提出了一般的无量纲稳定性判据。引入了稳定性图,可以根据输入的运行参数将泵的运行分类为稳定或不稳定。推导了一种高级数值模型,该模型考虑了在垂直环形配置中通过EHD感应泵送液膜的温度梯度而在整个流体主体中感应出的电荷。对不同的入口温度曲线和存在焦耳热的情况进行了包括外部载荷影响的无量纲参数研究。最后,建立了一个无量纲的理论模型来研究和理解能够产生净流量的电极几何结构中的EHD传导现象。结果表明,采用最小的拖曳电极设计,EHD传导现象能够提供净流量。进一步扩展了理论模型,以研究EHD传导现象对两相流(即分层的液体/蒸汽介质)的影响。给出的数值结果证实了具有EHD传导机制的液膜净流产生的概念。

著录项

  • 作者

    Al Dini, Salem A. S.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Industrial.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;机械、仪表工业;
  • 关键词

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