电压不均匀矩形通道中两级EHD气泵性能的提高

A. K. M. Monayem H. Mazumder
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引用次数: 0

摘要

本文通过实验测量和数值模拟,对矩形通道中两级电液动力(EHD)气泵的性能增强进行了评价。以电压不均匀的两级EHD气泵为研究对象,采用8个发射电极配置,寻求级数与施加电压之间的关系。EHD泵在三种不同的工作电压(20kv、24kv和28kv)下进行组合评估,以进一步提高其性能。为了达到最大的增强效果,将EHD气泵的发射电极平齐安装在通道壁上,从而产生的电晕风直接扰动边界层厚度,改善了气体的抽运。沿着管道长度在三个横截面测量速度,然后积分得到体积流速。数值结果使通道内的流动可视化更加生动,对流动的发展有了更好的了解。两级EHD气泵可以产生并维持最大体积流量的气流,当施加电压不均匀时,被认为效率更高。结果表明,EHD技术具有广泛的工程应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Enhancement of Two Stages EHD Gas Pump in a Rectangular Channel With Uneven Voltages
In this study, performance enhancement of a two stage electrohydrodynamic (EHD) gas pump in a rectangular channel has been evaluated by experimental measurement and numerical simulations. This study is implemented by a two stage EHD gas pump with uneven voltages for 8 emitting electrodes configuration to seek the relation between the number of stages and applied voltages. The EHD pump is evaluated for a combination of three different operating voltages (20 kV, 24 kV, and 28 kV) for further enhancement in its performance. To achieve the maximum enhancement, the emitting electrodes of the EHD gas pump are flush mounted on the channel walls so that the corona wind produced directly disturbs the boundary layer thickness and improves gas pumping. Velocities are measured at three cross-sections along the tube length and then integrated to obtain the volume flow rate. The numerical results enable vivid flow visualizations inside the channel, providing a great understanding of the development of the flow. The two stages EHD gas pump, which can be produced and sustained air flows with a maximum volume flow rate is considered more efficient when it is operated with uneven applied voltages. The results show that EHD technique has a great potential for many engineering applications.
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