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EFFECT OF ELECTRIC FIELDS ON TWO-PHASE IMPINGEMENT HEAT TRANSFER

机译:电场对两相碰撞传热的影响

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The effect of electric fields applied to tw impingement heat transfer is explored for the first time. The application of an electric field between a capillary and heated surface results in the ability to control the free boundary flow from discreet drops to jets to sprays. Through an experimental study, the impingement heat transfer was evaluated over a range of operating and geometrical parameters using subcooled ethanol as the working fluid. The ability to change the mode of impinging mass did change the surface heat transfer. The characteristics of the impinging mass on heat transfer was dependent on capillary flow rate, applied voltage, capillary to heated surface spacing, capillary geometry, and heat flux. Enhancement occurred primarily at low heat fluxes (below 30 W/cm2) under ramified spray conditions where the droplet momentum promoted thin films on the heated surface. Higher heat fluxes resulted in greater vapor momentum from the surface minimizing the effect of different modes. However, under ramified spray conditions less mass was impacting the heated surface showing that heat transfer rates at higher heat fluxes were achievable with less mass, resulting in greater evaporation efficiency.
机译:首次探讨了电场对第二次传热的影响。在毛细管和加热的表面之间施加电场会导致控制从离散液滴到射流再到喷雾的自由边界流的能力。通过实验研究,使用过冷乙醇作为工作流体,在一系列操作和几何参数上评估了碰撞传热。改变撞击质量模式的能力确实改变了表面传热。传热过程中撞击物质的特性取决于毛细管流速,施加的电压,毛细管至被加热表面的间距,毛细管几何形状和热通量。增强作用主要发生在分叉喷雾条件下的低热通量(低于30 W / cm2)下,在此条件下,液滴的动量会促进受热表面上的薄膜。较高的热通量会导致来自表面的较大的蒸气动量,从而使不同模式的影响最小化。但是,在分叉的喷雾条件下,较小的质量会影响加热的表面,这表明以较小的质量可以实现较高热通量下的传热速率,从而提高蒸发效率。

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