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Laser Doppler instrument for measurement of vibration of moving turbine blades

机译:激光多普勒仪,用于测量移动的涡轮叶片的振动

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A laser Doppler instrument using a 1 mW laser has been developed for the measurement of the vibration of moving objects. Particular interest has been taken in rotating turbine blades. The design and optimisation of the instrument are described, and details given of its performance and resolution. It is shown that resolution is limited by signaloise ratio and by Doppler broadening, both of which can be predicted. A coherence loss factor is established which enables the expected signaloise ratio to be estimated from simple `noncoherent¿ measurements of light scattered from a target. Experiments are described which compare the performance of photomultipliers and avalanche photodiodes. The instrument has been used successfully on a turbine having blade-tip velocities up to 300 m/s, equivalent to Doppler shifts up to 1000 MHz. At the lower frequencies, photomultipliers and avalanche photodiodes are comparable in performance, but at the top end of the range only the latter is satisfactory. Resolution in velocity of about one part in 104 is achieved with an output bandwidth of 1 kHz.
机译:已经开发出使用1 mW激光的激光多普勒仪,用于测量运动物体的振动。旋转涡轮叶片引起了人们的特别关注。描述了仪器的设计和优化,并详细说明了其性能和分辨率。结果表明,分辨率受信噪比和多普勒展宽的限制,两者均可预测。建立了相干损耗因子,该因子使期望的信噪比可以从对目标散射的光的简单“非相干”测量中估算出来。描述了比较光电倍增管和雪崩光电二极管性能的实验。该仪器已成功用于叶片速度高达300 m / s的涡轮机上,相当于多普勒频移高达1000 MHz。在较低的频率下,光电倍增管和雪崩光电二极管的性能相当,但是在该范围的高端,只有后者才是令人满意的。通过1 kHz的输出带宽可实现104左右速度的分辨率。

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