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Experimental Study on Corona Discharge Characteristics and Heat Transfer Enhancement Application at Atmospheric Pressure

机译:电晕放电特性和热传递增强应用在大气压下的实验研究

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摘要

The mechanism of the electric field for heat transfer enhancement with needle-to-ring corona discharges is studied by experiment. Results show that discharge is easier to occur when negative voltage is applied and the electrical characteristics still obey Townsend's equation. The time-averaged velocity field results demonstrate that positive corona produces ionic wind more effectively than negative corona. In addition, it is found that ionic wind can dramatically enhance heat transfer. The enhancement effect of positive discharge is more significant than that of negative one.
机译:通过实验研究了用针对环电晕放电进行热传递增强的电场的机理。 结果表明,当应用负电压时,放电更容易发生,电气特性仍然遵循Townsend的等式。 时间平均速度场结果表明,正电晕比负电晕更有效地产生离子风。 另外,发现离子风可以显着增强传热。 阳性放电的增强效果比负面放电更显着。

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