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首页> 外文期刊>Journal of magnetic resonance >MRI technique for measurement of velocity vectors, acceleration, and autocorrelation functions in turbulent flow
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MRI technique for measurement of velocity vectors, acceleration, and autocorrelation functions in turbulent flow

机译:MRI技术用于测量湍流中的速度矢量,加速度和自相关函数

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摘要

In this paper, we show velocity images for liquid flow in a cylindrical pipe at Reynolds numbers of up to 5000. Three orthogonal velocity components are acquired from a single excitation over a timescale of 60 ms thus obtaining an `instantaneous' description of the fluid flow in steady laminar and chaotic turbulent flow. It is also shown how the technique, termed the gradient echo rapid velocity and acceleration imaging sequence (GERVAIS), can be used to acquire acceleration (convective derivative) images by incorporation of double pulsed gradient spin echo (PGSE) pairs into the pulse sequence such that the resulting phase shift is a measure of the change in the velocity over the mixing time between successive PGSE pairs. The technique has also been used to acquire up to 16 successive z-velocity images, providing spatio-temporal information of the velocity fluctuations over a period of 320 ms, which are then used to calculate spatially resolved velocity autocorrelation functions. It is found that over the timescale of the velocity measurements, which is principally determined by the residence time in the coil, the local velocity fluctuations are seen to be small compared to the local velocities, confirming that the data acquisition times achieved are rapid enough to capture `instantaneous' images of the flow field.
机译:在本文中,我们显示了在雷诺数高达5000的圆柱管中液体流动的速度图像。在60 ms的时间范围内从一次激发获得了三个正交速度分量,从而获得了对液体流动的“瞬时”描述在稳定的层流和混乱的湍流中。还显示了如何通过将双脉冲梯度自旋回波(PGSE)对结合到脉冲序列中来使用称为梯度回波快速速度和加速度成像序列(GERVAIS)的技术来获取加速度(对流导数)图像,例如所产生的相移是连续PGSE对之间混合时间内速度变化的量度。该技术还已用于获取多达16个连续的z速度图像,提供了320 ms周期内速度波动的时空信息,然后将其用于计算空间分辨的速度自相关函数。发现在速度测量的时间范围内(主要由线圈中的停留时间确定),与局部速度相比,局部速度波动被认为较小,这证实了所获得的数据采集时间足够快,足以捕获流场的“瞬时”图像。

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