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Applicability of moire deflection tomography for diagnosing arc plasmas

机译:莫尔偏转层析成像技术在电弧等离子体诊断中的适用性

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摘要

The argon arc plasma whose central temperature, 1.90 X 10~(4) K, is used as a practical example for an experiment to research the applicability of moire deflection tomography in arc plasma flow-field diagnosis. The experimental result indicates that moire deflection of the measured argon arc plasma is very small, even smaller than that of a common flame with the maximal temperature of nearly 1.80 X 10~(3) K The refractive-index gradient in moire deflection tomography mainly contributes to the temperature gradient in essence when the probe wavelength and pressure are certain in plasma diagnosis. The applicable temperature ranges of moire deflection tomography in the argon arc plasma diagnosis are given with the probe wavelength 532 nm at 1 atm in certain measuring error requirements. In a word, the applicable temperature range of moire deflection tomography for arc plasma diagnosis is intimately related to the probe wavelength and the practical measuring requirements.
机译:以中心温度为1.90 X 10〜(4)K的氩弧等离子体为例,研究莫尔偏转层析成像技术在电弧等离子体流场诊断中的适用性。实验结果表明,测得的氩弧等离子体的莫尔偏转很小,甚至比最高温度接近1.80 X 10〜(3)K的普通火焰的莫尔偏转小。莫尔偏转层析成像中的折射率梯度主要是由于在血浆诊断中确定探针的波长和压力时,本质上是温度梯度。在一定的测量误差要求下,给出了在1个大气压下探头波长为532 nm时在氩弧等离子体诊断中适用的莫尔条纹层析成像的温度范围。简而言之,莫尔偏转层析成像技术在电弧等离子体诊断中的适用温度范围与探头波长和实际测量要求密切相关。

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