Two-Phase Liquid-Solid Hydrodynamics of Inclined Fluidized Beds

Huda Ridha, N. K. F. Al-Abboodi
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引用次数: 1

Abstract

Although many fluidized systems are not vertically oriented, little research has been done on fluidization within inclined channels. The fluidization of the gravitational force and the tensile force may be substantially opposing in the vertical system. The theory of gravitational field fluidization, which is related to industrial fluidization processes like coal gasification, iron ore reduction, and catalytic cracking and calls for the use of standing tubes or angled risers, has to be developed in order to encompass various orientations. Without underlying theories, engineers must rely on vertical fluidization equations to build these sloping systems. A significant barrier to improving the design and optimization of new solid circulation systems is the tendency of fluidization. Based on historical developments and theoretical progress, the study presents an overview of recent advancements of liquid-solid fluidized beds in inclined columns. The fluidized bed is investigated as a whole by looking at the governing factors.
倾斜流化床的两相液固流体力学
虽然许多流化系统不是垂直定向的,但对倾斜通道内流化的研究很少。在垂直系统中,重力的流化和张力的流化可能基本上相反。引力场流化理论与工业流化过程有关,如煤气化、铁矿石还原和催化裂化,需要使用立管或有角度的立管,必须发展以涵盖各种方向。在没有基础理论的情况下,工程师必须依靠垂直流化方程来建造这些倾斜的系统。改进新型固体循环系统的设计和优化的一个重要障碍是流化的趋势。在回顾历史发展和理论进展的基础上,综述了斜柱式液固流化床的最新进展。从控制因素的角度对流化床进行了整体研究。
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