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Measurement of gas-phase sound speedand thermal diffusivity over a broad pressure range using laser-induced thermal acoustics

机译:使用激光诱导的热声学测量宽压力范围内的气相声速和热扩散率

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摘要

We report on the detection and analysis of signals generated from gas-phase laser-induced gratings over a large range of static pressure (0.04–100 atm). We employed the experimental technique of laser-induced thermal acoustics and performed measurements on mixtures of NO2 in air and CO2 as a function of pressure. Accurate analysis of the acquired data was obtained from a full theory, including beam size effects. The theory fully reproduces the observed data for a ratio of molecular mean free path to grating wavelength extending from 1 to 4 x 10^-4. Nonlinear, least-squares fits between modeled and experimental signals provided accurate values of the sound speed and thermal diffusivity.
机译:我们报告了在很大的静压力范围内(0.04–100 atm)由气相激光诱导光栅产生的信号的检测和分析。我们采用了激光诱导热声学的实验技术,并对空气中的NO2和CO2的混合物作为压力的函数进行了测量。从包括光束尺寸效应在内的完整理论可以准确地分析采集到的数据。该理论完全再现了分子平均自由程与光栅波长的比率从1扩展到4 x 10 ^ -4的观测数据。建模和实验信号之间的非线性最小二乘拟合提供了声速和热扩散率的准确值。

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