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A Fourier Collocation Approach for Transit-Time Ultrasonic Flowmeter Under Multi-Phase Flow Conditions

机译:多相流条件下传输时间超声波流量计的傅里叶搭配方法

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摘要

A numerical model for a clamp-on transit-time ultrasonic flowmeter (TTUF) under multi-phase flow conditions is presented. The method solves equations of linear elasticity for isotropic heterogeneous materials with background flow where acoustic media are modeled by setting shear modulus to zero. Spatial derivatives are calculated by a Fourier collocation method allowing the use of the fast Fourier transform (FFT) and time derivatives are approximated by a finite difference (FD) scheme. This approach is sometimes referred to as a pseudospectral time-domain method. Perfectly matched layers (PML) are used to avoid wave-wrapping and staggered grids are implemented to improve stability and efficiency. The method is verified against exact analytical solutions and the effect of the time-staggering and associated lowest number of points per minimum wavelengths value is discussed. The method is then employed to model a complete TTUF measurement setup to simulate the effect of a flow profile on the flowmeter accuracy and a study of an impact of inclusions in flowing media on received signals is carried out.
机译:介绍了多相流动条件下夹紧接收过时超声波流量计(TTUF)的数值模型。该方法求解各向同性异质材料的线性弹性方程,背景流动通过将剪切模量设定为零来建模声学介质。空间衍生物通过允许使用快速傅里叶变换(FFT)和时间衍生物来计算空间衍生物,并且通过有限差分(FD)方案来近似。该方法有时被称为伪谱时时域方法。完美匹配的图层(PML)用于避免波包包装和交错的网格以提高稳定性和效率。讨论了该方法以精确的分析解决方案验证,并且讨论了每最小波长值的时间传播和相关的最低数量点的效果。然后采用该方法来模拟完整的TTUF测量设置,以模拟流动轮廓对流量计准确度的影响,并且对在接收信号中的流动介质中的夹杂物的影响进行了研究。

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