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磁场提升电渗加固效果的试验探究

徐朝阳 周建 周吾桐 蒋熠诚 朱则铭 余锦地

岩土工程学报2024,Vol.46Issue(z2):77-81,5.
岩土工程学报2024,Vol.46Issue(z2):77-81,5.DOI:10.11779/CJGE2024S20003

磁场提升电渗加固效果的试验探究

Experimental study on enhancing efficiency of electroosmotic reinforcement with magnetic field

徐朝阳 1周建 1周吾桐 1蒋熠诚 1朱则铭 1余锦地2

作者信息

  • 1. 浙江大学滨海和城市岩土工程研究中心,浙江 杭州 310058
  • 2. 浙江省水利水电勘测设计院,浙江 杭州 310002
  • 折叠

摘要

Abstract

The optimization of electroosmotic efficiency by improving interface resistance has received widespread attention.Based on the researches on magneto electrochemistry,a magnetic field is innovatively introduced into the electroosmotic process,aiming to reduce interface resistance and improve electroosmotic efficiency.Through experiments,it is demonstrated that introducing a magnetic field can significantly improve the efficiency of electroosmosis,and the optimal placement is at the anode.Specifically,a reasonable arrangement of magnetic fields can significantly delay the increase in anode interface resistance,improve the electro osmotic drainage performance,and significantly shorten the processing time.In terms of energy consumption,multiple indices are employed for comprehensive analysis,including equivalent energy consumption,total energy consumption and energy utilization rate.The results show that introducing a magnetic field is an effective way to solve the problem of high energy consumption in electroosmosis,especially when the magnetic field is arranged at the anode,and it can significantly improve energy utilization rate and reduce total energy consumption.Among them,the reusable permanent magnets are used as magnetic poles,which can be reused and have low cost.Therefore,objectively speaking,the technology of introducing magnetic fields in electroosmosis has great engineering application potential and practical value.

关键词

电渗/磁电化学/磁场/界面电阻/能耗

Key words

electroosmosis/magnetoelectrochemistry/magnetic field/interface resistance/energy consumption

分类

建筑与水利

引用本文复制引用

徐朝阳,周建,周吾桐,蒋熠诚,朱则铭,余锦地..磁场提升电渗加固效果的试验探究[J].岩土工程学报,2024,46(z2):77-81,5.

基金项目

国家自然科学基金项目(52078455,51708507) (52078455,51708507)

浙江省水利厅科技技术项目(RA2012) (RA2012)

岩土工程学报

OA北大核心CSTPCD

1000-4548

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