Magnetic field assisted fluidization—Dimensional analysis addressing the physical basis

Jordan Hristov
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引用次数: 28

Abstract

This paper originates a discussion on dimensional analysis and scaling in magnetically assisted fluidized beds. Basic examination of process variables, merging mechanical and magnetic units, allows the conversion of mixed sets of variables into unified terms representing surface forces as effects of the fields contributing to the assisted fluidization behaviour. This transformation is termed “pressure transform” since the new variables are all characteristic pressures generated by three basic fields: gravity, magnetic and fluid flow. This approach addresses the physical basis in terms of dimensionless groups rather than formal algebraic manipulations pertinent to classical dimensional analysis.

Basic dimensionless group termed granular magnetic Bond number is introduced as the ratio of characteristic pressures of gravity and of magnetic field. This analysis also provides a set of named dimensionless numbers characterizing magnetic field assisted fluidization such as Filippov number, Rosensweig number, Kwauk number and Siegell number, derived as ratios of characteristic pressures.

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磁场辅助流化的量纲分析
本文讨论了磁辅助流化床的量纲分析和结垢问题。对过程变量的基本检查,合并机械和磁单元,允许将混合变量集转换为统一的术语,表示作为辅助流化行为的场的影响的表面力。这种变换被称为“压力变换”,因为新的变量都是由三个基本场:重力、磁场和流体流动产生的特征压力。这种方法处理无量纲群的物理基础,而不是与经典量纲分析相关的正式代数操作。引入了一种称为颗粒磁键数的基本无量纲群,即重力特征压力与磁场特征压力之比。该分析还提供了一组命名的表征磁场辅助流化的无量纲数,如Filippov数,Rosensweig数,Kwauk数和Siegell数,导出为特征压力的比率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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