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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Temperature measurements in a decaying laser-induced plasma in air at elevated pressures
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Temperature measurements in a decaying laser-induced plasma in air at elevated pressures

机译:高压下空气中衰减的激光诱导等离子体中的温度测量

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This article discusses two measurement techniques for temperature determination of laser-induced plasmas in a gas at pressures relevant for combustion engines. Plasmas induced by laser breakdown in air at initial pressures ranging from 03 MPa to 2.5 MPa are investigated using optical spectroscopy. Results for 0.8 MPa, 1.2 MPa and 1.6 MPa are reported here. Due to the elevated pressure, a significant contribution from continuum radiation is apparent The first temperature measurement technique relies on the interpretation of the continuum emission. The second technique is based on the line emissions from different elements and ionization stages in the plasma and is implemented with the multi-element Saha-Boltzmann plot method. The methodology may be applicable for temperature measurements under various conditions, e.g., for plasmas in high pressure gas environments such as in industrial applications of laser-induced breakdown spectroscopy or for plasma sources for illumination purposes. We investigate optimizations of laser-induced spark ignition. The energy released in the laser-induced plasma is determined based on temperature measurements.
机译:本文讨论了两种测量技术,用于在与内燃机相关的压力下确定气体中激光诱导等离子体的温度。使用光谱学研究了在初始压力​​为03 MPa至2.5 MPa的空气中由激光击穿引起的等离子体。此处报告了0.8 MPa,1.2 MPa和1.6 MPa的结果。由于压力升高,连续辐射的显着贡献是显而易见的。第一种温度测量技术依赖于连续辐射的解释。第二种技术基于等离子体中不同元素和电离阶段的线发射,并通过多元素Saha-Boltzmann绘图方法实现。该方法可以适用于在各种条件下的温度测量,例如,用于高压气体环境中的等离子体,例如在激光诱导击穿光谱学的工业应用中,或者用于照明目的的等离子体源。我们研究了激光诱导火花点火的优化。激光感应等离子体中释放的能量是根据温度测量值确定的。

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