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高压静电场下固体颗粒床沸腾传热特性

王海 王晨 何卫建

排灌机械工程学报2026,Vol.44Issue(8):798-805,8.
排灌机械工程学报2026,Vol.44Issue(8):798-805,8.DOI:10.3969/j.issn.1674-8530.24.0201

高压静电场下固体颗粒床沸腾传热特性

Boiling heat transfer characteristics of solid particle beds under high-voltage electrostatic fields

王海 1王晨 1何卫建1

作者信息

  • 1. 江苏大学能源与动力工程学院,江苏 镇江 212013
  • 折叠

摘要

Abstract

To address the issues of low critical heat flux density and insufficient bubble nucleation du-ring the boiling process of porous structures in solid particle beds,the active electric field enhancement technology was employed to investigate the boiling heat transfer performance of flat-laid solid particle beds on a heated surface.AE-3000 dielectric fluid was selected as the boiling working fluid,and the effects of different electrode configurations on the boiling heat transfer characteristics were analyzed.The boiling heat transfer performance of adding solid particles of different sizes and with different num-bers of solid particle layers to the heating surface under the action of an electric field was also explored.The results show that the high-voltage electrostatic field can significantly reduce the initial superheat during the nucleate boiling phase of the solid particle bed.In the medium-to-high heat flux region,adding 5 mm flat-laid solid particles to the heated surface can cause oscillation and bouncing under the action of bubble buoyancy,promoting liquid reflux and bubble detachment,giving better boiling heat transfer performance than solid particles of other sizes.Meanwhile,the electrostatic field can effectively postpone the onset of the critical heat flux density on the solid particle-bed surface.The higher the ap-plied voltage,the better the enhancement of the critical heat flux on each solid particle surface,with a maximum improvement of 72.0%compared with the case without an electric field.In addition,it is found that adding a three-layer flat-laid solid particle bed on the heated surface under an electric field yields the best boiling heat transfer performance,with the boiling heat transfer coefficient increasing by 58.1%compared with a smooth copper surface.

关键词

电场/池沸腾/固体颗粒床/气泡/强化传热

Key words

electric field/pool boiling/solid particle bed/bubbles/enhanced heat transfer

分类

能源科技

引用本文复制引用

王海,王晨,何卫建..高压静电场下固体颗粒床沸腾传热特性[J].排灌机械工程学报,2026,44(8):798-805,8.

基金项目

国家自然科学基金资助项目(51806084) (51806084)

低品位能源利用技术及系统教育部重点实验室开放基金(LLEUTS-202101) (LLEUTS-202101)

排灌机械工程学报

1674-8530

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