Bjørndal Erlend, Frøysa Kjell-Eivind, Engeseth Svein-Atle
3-Phase Meas. AS, Bergen.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Aug;55(8):1794-808. doi: 10.1109/TUFFC.2008.863.
A new method for measuring the pressure reflection coefficient in a buffer rod configuration is presented, together with experimental results for acoustic measurements of the liquid density, based on the measurement of the liquid's acoustic impedance. The method consists of using 2 buffers enclosing the liquid in a symmetrical arrangement with a transducer fixed to each buffer. One of the transducers is used in a pulse-echo mode while the other transducer operates as a receiver. The echo amplitudes leading to the pressure reflection coefficient as found by this method possess advantages such as reduced attenuation due to a shorter liquid transmission path and reduced interference, as compared with the ABC method. Measurements with distilled water and with special density calibration oil qualities have been performed using both the new method and the ABC method and are shown for the new method to give a density span within +/- 0.15% of the reference values. A comparison of the measured densities based on both a time-domain and a l(2)-norm frequency domain integration signal processing approach is given, along with a recommendation as to how the signal processing should be performed.
本文提出了一种在缓冲杆配置中测量压力反射系数的新方法,并给出了基于液体声阻抗测量的液体密度声学测量实验结果。该方法包括使用两个缓冲器,以对称方式将液体包围,每个缓冲器上固定一个换能器。其中一个换能器用于脉冲回波模式,另一个换能器作为接收器。与ABC方法相比,通过该方法得到的导致压力反射系数的回波幅度具有诸如液体传输路径较短导致衰减降低以及干扰减少等优点。使用新方法和ABC方法对蒸馏水和特殊密度校准油质进行了测量,结果表明新方法给出的密度范围在参考值的±0.15%以内。给出了基于时域和l(2)范数频域积分信号处理方法的测量密度比较,以及关于如何进行信号处理的建议。