An experimental study on heat transfer using electrohydrodynamics (EHD) over a heated vertical plate.

IF 2.2 Q2 ENGINEERING, MULTIDISCIPLINARY
Weerachai Chaiworapuek , Phantisa Limleamthong , Teerapat Thungthong , Jetsadaporn Priyadumkol
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引用次数: 0

Abstract

The Corona effect offers significant potential for improving heat transfer efficiency in air. This study thoroughly examined how a single corona discharge affects heat transfer on a heated vertical flat plate. Key parameters tested included corona voltage, the aspect ratio of the vertical plate (y/L), and the inter-electrode discharge gap ratio (x/d). The findings revealed that increasing the corona voltage and decreasing the discharge gap enhanced heat transfer efficiency along the vertical surface. A predictive formula for the local Nusselt number was developed to characterize heat transfer on the plate. Additionally, Particle Image Velocimetry (PIV) was used to analyze the corona wind generated by the discharge. The study observed that the corona wind formed a vortex in the upstream region, which resulted in lower heat transfer rates upstream compared to the downstream region.
利用电流体力学(EHD)在加热的垂直板上进行热传递的实验研究。
电晕效应为提高空气中的传热效率提供了巨大潜力。本研究深入探讨了单次电晕放电如何影响加热垂直平板上的热传递。测试的主要参数包括电晕电压、垂直平板的长宽比(y/L)和电极间放电间隙比(x/d)。研究结果表明,增加电晕电压和减小放电间隙可提高垂直表面的传热效率。为描述板上的传热特性,还开发了一个局部努塞尔特数预测公式。此外,还使用粒子图像测速仪 (PIV) 分析了放电产生的电晕风。研究发现,电晕风在上游区域形成了一个漩涡,导致上游区域的传热率低于下游区域。
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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
自引率
0.00%
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审稿时长
68 days
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