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首页> 外文期刊>Measurement Science & Technology >A comparative assessment of two optical fibre techniques for measuring the speed of the electric wind in a negative polarity, atmospheric corona discharge
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A comparative assessment of two optical fibre techniques for measuring the speed of the electric wind in a negative polarity, atmospheric corona discharge

机译:两种用于测量负极性电风速度的光纤技术的比较评估,大气电晕放电

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摘要

Two optical fibre anemometers, one based on a Mach-Zehnder interferometer (OFIA) and another a novel laser-optical fibre Bragg grating sensor (FBGA) have been constructed to measure the speed of the convective air flow generated in the point-plane gap of a negative corona discharge in atmospheric air. In both configurations the sensing section of the optical fibre anemometers is subjected to controlled, repetitive bursts of infrared radiation from a CO_(2) laser and the combination of localized heating and convective cooling by the corona wind results in an optical signal that is directly calibrated to the speed of the wind. Both the OFIA and FBGA successfully measured the speed of the corona wind in the discharge gap, with wind speeds ranging from 0 to 0.7 m s~(-1) observed at different locations in the discharge gap. However, the FBGA, due primarily to the ability to average sensor response over many measurements, exhibited an order of magnitude higher sensitivity than the OFIA ((DELTA)v approx= 4 X 10~(-3) m s~(-1) compared to 3 X 10~(-2) m s~(-1)). Both sensors yielded measurements of wind speed that were an order of magnitude lower than similar measurements using laser Doppler anemometry (LDA), indicating that the seed particles introduced as part of the LDA system are providing false reading of wind speed due to acceleration by the gap electric field.
机译:已经构造了两个光纤风速仪,一个基于马赫曾德尔干涉仪(OFIA),另一个基于新颖的激光光纤布拉格光栅传感器(FBGA),以测量在点平面间隙中产生的对流气流的速度。大气中的负电晕放电。在这两种配置中,光纤风速计的传感部分都受到来自CO_(2)激光器的受控,重复性红外辐射的冲击,并且局部加热和电晕风对流冷却的组合产生直接校准的光信号以风速。 OFIA和FBGA都成功地测量了放电间隙中电晕风的速度,在放电间隙中的不同位置观察到的风速范围为0到0.7 m s〜(-1)。然而,FBGA主要由于能够在许多测量中平均传感器响应,因此与OFIA相比,其灵敏度高出一个数量级(Δv约为= 4 X 10〜(-3)ms〜(-1)至3 X 10〜(-2)ms〜(-1))。两个传感器产生的风速测量值均比使用激光多普勒风速计(LDA)进行的相似测量值低一个数量级,这表明作为LDA系统一部分引入的种子颗粒由于间隙的加速而提供了错误的风速读数。电场。

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