优化水力旋流分离器的几何参数:综述与展望

Long Ni, Jinyi Tian, T. Song, Yongson Jong, Jianing Zhao
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引用次数: 77

摘要

水力旋流器在各行业中广泛应用于固液或液液分离。然而,基于水力旋流器几何参数优化的强化分离技术的确切机制尚不清楚,许多研究团队进行了大量的研究,以通过优化几何参数来扩大水力旋流器的应用范围。本文综述了水力旋流器强化分离技术的最新进展。强化分离技术分为圆柱段、进气道、涡流探测器、底流管、锥形段、旋流器倾角、旋流器插入、锥形段/顶点注水、回流装置和多旋流器布置等十大类。根据水力旋流器的分离效率、切割粒度、劈裂比、能耗、容量等关键分离性能参数,对这些强化分离技术进行了分析和总结。希望本文所综述的内容、提出的挑战以及未来的方法和技术能够使从事该领域工作的研究人员更好地了解水力旋流器的强化分离技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing Geometric Parameters in Hydrocyclones for Enhanced Separations: A Review and Perspective
Hydrocyclones have been extensively applied for solid–liquid or liquid–liquid separations in various industries. However, the exact mechanisms underlying the enhanced separation technologies based on the optimization of geometric parameters of hydrocyclones remain unclear, and a number of research teams have performed numerous studies to enlarge the application scope of hydrocyclones by optimizing geometric parameters. This review provides a comprehensive state-of-the-art review of hydrocyclone enhanced-separation technologies. The enhanced-separation technologies are categorized into ten groups: cylindrical section, inlet, vortex finder, underflow pipe, conical section, hydrocyclone inclination angle, hydrocyclone insertion, conical-section/apex water injection, reflux device, and multi-hydrocyclone arrangement. These enhanced-separation technologies were analyzed and summarized according to the key separation-performance parameters of hydrocyclones, such as separation efficiency, cut size, split ratio, energy consumption, and capacity. It is expected that both the reviewed contents and the proposed challenges and future methodologies and technologies may provide research fellows working in this field with an improved understanding of enhanced separation technologies of hydrocyclones.
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