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首页> 外文期刊>Chemical Engineering Science >MAGNETIC RESONANCE IMAGING OF LIQUID FLOW AND PORE STRUCTURE WITHIN PACKED BEDS
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MAGNETIC RESONANCE IMAGING OF LIQUID FLOW AND PORE STRUCTURE WITHIN PACKED BEDS

机译:填充床内液体流动和孔结构的磁共振成像

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摘要

Magnetic resonance imaging (MRI) volume- and velocity-measurement techniques are used to probe structure-flow correlations within the interparticle space of a packed bed of ballotini. Images of the three mutually orthogonal components of the velocity field are obtained in two perpendicular slices within a bed of 5 mm diameter ballotini packed within a glass column of internal diameter 4.6 cm. Comparison of flow images obtained for two beds of identical column-to-particle diameter ratio but of differing length show that velocity enhancements at the walls of the bed are greater in the shorter, more ordered, bed. A three-dimensional volume image of each bed is also obtained and analysed to partition the interparticle space into individual pores and determine the location of pore necks. Correlations between volume flow rate and the surface area of the constrictions (pore necks) within the interparticle space lie between two limiting behaviours. For pores associated with low local Reynolds number, the volume flow rate through the constrictions scales as the square of the cross-sectional area of the constriction, whereas at the extreme of high local Reynolds number pores show volume flow rates scaling with cross-sectional area. (C) 1997 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:磁共振成像(MRI)体积和速度测量技术用于探测Ballotini填充床颗粒间空间内的结构流相关性。速度场的三个相互正交的分量的图像是在填充于内径4.6 cm的玻璃柱中,直径为5 mm的Ballotini床上的两个垂直切片中获得的。比较具有相同的色谱柱与粒径比但长度不同的两张床获得的流动图像,结果表明,在更短,更有序的床中,床壁处的速度增强更大。还获得了每个床的三维体积图像,并进行了分析,以将粒子间空间分配到各个孔中并确定孔颈的位置。颗粒间空间内的体积流率与缩颈(孔颈)表面积之间的相关性位于两个限制行为之间。对于与局部雷诺数低相关的孔,通过缩颈的体积流量与缩颈横截面积的平方成比例,而在局部雷诺数高的极端情况下,孔的体积流量随横截面积成比例缩放。 (C)1997 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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