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Measuring particle concentration in multiphase pipe flow using acoustic backscatter: Generalization of the dual-frequency inversion method.

机译:利用声反向散射测量多相管流中的颗粒浓度:双频反演方法的推广。

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摘要

A technique that is an extension of an earlier approach for marine sediments is presented for determining the acoustic attenuation and backscattering coefficients of suspensions of particles of arbitrary materials of general engineering interest. It is necessary to know these coefficients (published values of which exist for quartz sand only) in order to implement an ultrasonic dual-frequency inversion method, in which the backscattered signals received by transducers operating at two frequencies in the megahertz range are used to determine the concentration profile in suspensions of solid particles in a carrier fluid. To demonstrate the application of this dual-frequency method to engineering flows, particle concentration profiles are calculated in turbulent, horizontal pipe flow. The observed trends in the measured attenuation and backscatter coefficients, which are compared to estimates based on the available quartz sand data, and the resulting concentration profiles, demonstrate that this method has potential for measuring the settling and segregation behavior of real suspensions and slurries in a range of applications, such as the nuclear and minerals processing industries, and is able to distinguish between homogeneous, heterogeneous, and bed-forming flow regimes.
机译:提出了一种技术,该技术是对海洋沉积物的早期方法的扩展,用于确定具有一般工程意义的任意材料的颗粒的悬浮液的声衰减和后向散射系数。为了实现超声双频反转方法,必须知道这些系数(仅对于石英砂存在这些系数),在该方法中,使用以兆赫兹范围内的两个频率运行的换能器接收的反向散射信号来确定载液中固体颗粒悬浮液的浓度分布。为了证明这种双频方法在工程流中的应用,在湍流水平管流中计算了颗粒浓度分布。观测到的衰减和反向散射系数的趋势与基于可用石英砂数据的估计值和所得的浓度曲线进行了比较,表明该方法具有测量实际悬浮液和泥浆在水中的沉降和偏析行为的潜力。应用范围广泛,例如核工业和矿物加工工业,并且能够区分均质,非均质和成床流态。

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