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Optimal Design for a Portable NMR- and MRI-Based Multiphase Flow Meter

机译:便携式NMR和MRI基多相流量计的最佳设计

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摘要

In this paper, an optimal design for nuclear magnetic resonance and magnetic resonance imaging based multiphase flow meter is presented. The overall apparatus consists of an electromagnetic coil surrounded by 12 rings of Halbach arrays of 12 magnets each. Both the coil and the magnets arrays were simultaneously and optimally designed using a three-dimensional (3-D) finite-element method (FEM) package and particle swarm optimization algorithm. The aim of the design is to uniformly prepolarize the hydrogen spins of the atoms composing the flowing fluid, with a predefined static magnetic field, before they enter into the measurement area within which they are homogenously polarized with a perpendicular ac magnetic field. Cheap and lightweight hardware are the other two design parameters of the design. Results of extensive 3-D simulations of the design indicate that an optimized and homogenous static magnetic field distribution could be achieved within an area of 40 mm diameter and 606 mm length. In addition, using a multiturn coil of 6 cm diameter and 2000 turns, an ac magnetic field of 13 mT amplitude and 112 ppm homogeneity could be achieved, which is enough to handle fluids flowing at speed of up to 2 m/s. Experimental validation, which was done using newly constructed two Halbach arrays of cuboid and trapezoid magnet elements, respectively, indicates a good match with FEM simulations.
机译:本文介绍了基于核磁共振和磁共振成像的多相流量计的最佳设计。整体设备由每个电磁线圈组成,每个电磁线圈围绕12个磁铁的12个环的12环。线圈和磁体阵列都同时和最佳地设计使用三维(3-D)有限元方法(FEM)封装和粒子群优化算法。设计的目的是均匀地预先均匀化了由预定义的静态磁场构成流动流体的原子的氢气旋转,在进入测量区域之前,它们在其内偏振的测量区域内与垂直的交流磁场均化。便宜和轻巧的硬件是设计的其他两个设计参数。设计的广泛3-D模拟结果表明优化和均匀的静态磁场分布可以在40mm直径和606mm长度的面积内实现。另外,使用6厘米直径和2000圈的多旋转线圈,可以实现13mt幅度和112ppm均匀性的交流磁场,这足以处理流动以高达2米/秒的速度流动。实验验证分别使用新构造的两个长方体和梯形磁体元件的新构造的两个Halbach阵列进行了完成,表明与FEM模拟有良好的匹配。

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