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超声对绕丝滤管过滤过程影响的数值与实验研究

Numerical and experimental investigation of ultrasound effects on filtration process in wire-wrapped filter tube.

作者信息

Lin Weixiang, Wang Jiarui, Wang Simin

机构信息

School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Ultrason Sonochem. 2024 Oct;109:106991. doi: 10.1016/j.ultsonch.2024.106991. Epub 2024 Jul 14.

Abstract

Refinery filtration processes often face challenges related to rapidly increasing permeate pressure differentials and the consequent need for frequent back-flushing. This study investigates the impact of high-intensity immersed sonotrode ultrasound device on flow patterns to address these issues, both numerically and experimentally. Numerical simulations reveal that ultrasound promotes axial circular mixing of the bulk fluid, increasing average flow velocities around the filter tube from 5.11 × 10 m/s to 8.76 × 10-6.09 × 10 m/s, thereby facilitating cleansing of filter tube surfaces. Additionally, high-frequency pressure fluctuations contribute to enhancing the filtration process during positive pressure phases, while robust online back-flushing effects are generated during negative pressure phases. Although the wire-wrapped filter tube attenuates ultrasound energy as it penetrates the tube gaps, ultrasound still induces turbulent mixing inside and outside the filter tubes, aiding in the removal of impurities from the gaps. The utilization of ultrasound is demonstrated to not inflict harm on upstream and downstream facilities. Experimental results demonstrate that ultrasound-assisted filtration with 600 W and 1000 W power inputs reduces filtration pressure differences by 18 % and 73 %, respectively, affirming ultrasound's effectiveness in mitigating and preventing blockages, highlighting its significance for industrial applicability.

摘要

炼油厂过滤过程常常面临与渗透压差迅速增加以及随之而来的频繁反冲洗需求相关的挑战。本研究通过数值模拟和实验研究了高强度浸入式超声换能器装置对流动模式的影响,以解决这些问题。数值模拟表明,超声波促进了主体流体的轴向圆周混合,使过滤管周围的平均流速从5.11×10⁻⁶.⁰⁹ m/s增加到8.76×10⁻⁶.⁰⁹ m/s,从而有助于清洁过滤管表面。此外,高频压力波动有助于在正压阶段增强过滤过程,而在负压阶段会产生强大的在线反冲洗效果。尽管绕丝过滤管在超声波穿透管间隙时会衰减超声能量,但超声波仍会在过滤管内外引发湍流混合,有助于去除间隙中的杂质。结果表明,超声波的使用不会对上游和下游设施造成损害。实验结果表明,输入功率为600 W和1000 W的超声辅助过滤分别使过滤压差降低了18%和73%,证实了超声波在减轻和防止堵塞方面的有效性,突出了其在工业应用中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fe9/11345299/24939afcd4c0/gr1.jpg

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