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Effect of process parameters on the EHD airflow

机译:工艺参数对EHD气流的影响

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This work deals with the assessment by numerical investigations of the electrohydrodynamic enhancement of heat transfer in a channel. In order to get a better understanding of the phenomena, we developed an original numerical approach. The model handles the couplings between a non-isothermal turbulent flow and corona discharges from multiple wires. The typical configuration consists in a channel where air enters at a given velocity. In the channel, the ionic wind is produced by multiple coronating wires. In this study, the model is used in order to analyse the effect of some process parameters (inter-electrode distance, wire radius, applied voltage) on the flow and on the convective heat transfer enhancement. We firstly confirm that the model operates well and permits selection of the best parameters in a specific configuration. The model reveals that similar flows could be obtained with different combinations between the inter-electrode distance and the applied voltage. In a second stage, the distance between adjacent wires is discussed. Synergetic effects are obtained for close wires; they locally lead to a tenfold increase of the heat transfer enhancement.
机译:这项工作是通过对通道内传热的电流体动力学增强进行数值研究来进行评估的。为了更好地理解现象,我们开发了一种原始的数值方法。该模型处理非等温湍流与多根导线的电晕放电之间的耦合。典型的配置包括空气以给定速度进入的通道。在通道中,离子风是由多根加冕丝产生的。在本研究中,使用该模型来分析某些工艺参数(电极间距离,导线半径,施加电压)对流动和对流传热增强的影响。我们首先确认该模型运行良好,并允许在特定配置中选择最佳参数。该模型表明,通过电极间距离和施加电压之间的不同组合可以获得相似的流量。在第二阶段,讨论相邻导线之间的距离。闭合导线获得协同效应。它们局部导致传热增强十倍。

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