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Laser Ultrasonics System for Measurement of Speed of Sound in Gases

机译:用于测量气体速度的激光超声波系统

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In this work we developed a setup to measure the speed of sound in gases using a laser ultrasonics system. The mentioned setup is an all optical system composed by a Q-switched Nd:YAG laser to generate the sound waves, and a fiber optical microphone to detect them. The Nd:YAG provided a laser pulse of approximately 420 mJ energy and 9 ns of pulse width, at the wavelength of 1064 nm. The pulsed laser beam, focused by a positive lens, was used to generate an electrical breakdown (in the gas) which, in turn, generates an sound wave that traveled through a determined distance and reached the fiber optical microphone. The resulting signal was acquired in an oscilloscope and the time difference between the optical pulse and the arrival of the sound waves was used to calculate the speed of sound, since the distance was known. The system was initially tested to measure the speed of sound in air, at room pressure and temperature and it presented results in agreement with the theory, showing to be suitable to measure the speed of sound in gases.
机译:在这项工作中,我们开发了一种设置,使用激光超声系统测量气体的声速。所提到的设置是由Q开关ND:YAG激光器组成的所有光学系统,以产生声波,以及光纤光学麦克风以检测它们。 ND:YAG提供了大约420mJ能量的激光脉冲和9ns的脉冲宽度,在1064nm的波长下。由正透镜聚焦的脉冲激光束用于产生电击穿(在气体中),其又产生通过所确定的距离行进的声波并达到光纤光学麦克风。在示波器中获取所得到的信号,并且使用光波与声波的到达之间的时间差来计算声音,因为已知距离。最初测试系统以测量空气中的声音速度,在室内压力和温度下,它呈现出与理论一致的结果,显示适合测量气体中的声速。

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