首页> 外文会议>5th Joint ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Fluids Engineering Division Summer Conference 2007(FEDSM2007) >VELOCITY PROFILE MEASUREMENTS OF TWO-PHASE FLOW IN RECTANGULAR CHANNEL USING ULTRASONIC TIME-DOMAIN CORRELATION METHOD
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VELOCITY PROFILE MEASUREMENTS OF TWO-PHASE FLOW IN RECTANGULAR CHANNEL USING ULTRASONIC TIME-DOMAIN CORRELATION METHOD

机译:超声时域相关法测量矩形通道内两相流的速度分布

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Velocity measurement using ultrasound has attracted much attention in engineering fields and medical science field. Especially, Ultrasonic velocity profile monitor (UVP) has been in the spotlight in engineering fields, because of its many diagnostic advantages. The major advantage is that UVP can obtain instantaneous velocity distributions on beam line by measuring Doppler shift frequencies of echo signals. And UVP is applicable to existing pipes, because it is non-contact measurement technique. In recent years, various studies about UVP have been done, and UVP has already been put to practical use in engineering plants. The authors especially focused on two-phase flow measurement using ultrasound. Previously, we developed a way to measure bubbly flow using UVP. By this method, we are able to separate liquid information from bubbles information to some degrees. However, when the bubble number density is low, a problem occurs. Because the effect of liquid information is strong under that condition. From this fact, we applied the ultrasound time domain correlation method (UTDC) to two-phase flow measurement. This method is our original technique to measure the velocity distribution. It is based on the cross-correlation between two consecutive echoes of ultrasonic pulses. With this method, we can separate liquid information from bubble information even when the bubble number density is low, because reflected signals depend on the size of reflectors and frequency of ultrasound.
机译:使用超声波的速度测量已在工程领域和医学领域引起了广泛的关注。尤其是,超声波速度分布监测器(UVP)由于具有许多诊断优势,因此在工程领域备受关注。 UVP的主要优点是可以通过测量回波信号的多普勒频移频率来获得光束线上的瞬时速度分布。 UVP由于是非接触式测量技术,因此可应用于现有管道。近年来,已经完成了有关UVP的各种研究,并且UVP已经在工程工厂中投入实际使用。作者尤其关注使用超声进行两相流量测量。以前,我们开发了一种使用UVP测量气泡流量的方法。通过这种方法,我们能够在某种程度上将液体信息与气泡信息区分开。然而,当气泡数密度低时,出现问题。因为在这种情况下,流动信息的作用很强。因此,我们将超声时域相关方法(UTDC)应用于两相流量测量。这种方法是我们测量速度分布的原始技术。它基于超声脉冲的两个连续回波之间的互相关。使用这种方法,即使气泡数密度很低,我们也可以从气泡信息中分离出液体信息,因为反射信号取决于反射器的大小和超声波的频率。

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