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复杂结构微流体芯片中的瞬态流型研究
引用本文:张伟,徐进良.复杂结构微流体芯片中的瞬态流型研究[J].工程热物理学报,2007,28(2):247-250.
作者姓名:张伟  徐进良
作者单位:中国科学院广州能源研究所微能源系统实验室,广东,广州,510640;中国科学院研究生院,北京,100049;中国科学院广州能源研究所微能源系统实验室,广东,广州,510640
基金项目:国家自然科学基金 , 国家重点基础研究发展计划(973计划)
摘    要:在低质量流速和高热流密度下,对复杂结构微流体芯片中的流动沸腾进行了瞬态流型研究,发现了毫秒级微时间尺度的周期性流型和微通道中的分层流.在单个微通道区域,液膜沿流动方向逐渐增厚且蒸干总是首先发生在其上游区域,而在不同微通道区域间,下游微通道首先蒸干.分析表明,液相弗劳德数(Froude number)较低是微通道中分层流存在的原因.高沸腾数(Boiling number)引起汽液界面较大的剪切应力从而使液体不断向微通道出口处聚集,引起液膜厚度沿流动方向逐渐增厚.

关 键 词:MEMS  硅基微通道  流动沸腾  不稳定性  分层流
文章编号:0253-231X(2007)02-0247-04
修稿时间:2006年11月27

TRANSIENT FLOW PATTERNS IN A MICROFLUIDIC CHIP WITH COMPLICATED MICROSTRUCTURES
ZHANG Wei,XU Jin-Liang.TRANSIENT FLOW PATTERNS IN A MICROFLUIDIC CHIP WITH COMPLICATED MICROSTRUCTURES[J].Journal of Engineering Thermophysics,2007,28(2):247-250.
Authors:ZHANG Wei  XU Jin-Liang
Abstract:The transient flow patterns of boiling in a microfluidic chip with complicated microstruc- tures were studied at low mass fluxes and high heat fluxes.The periodic flow pattern in the timescale of milliseconds and stratified flow pattern were identified.For a microchannel in a separated zone,the liquid film thickness is increased along the flow direction and the dry-out always occurs earlier at the microchannel upstream.However,for different microchannel zones,the dry-out takes place earlier in the downstream zone.It is analyzed that the low liquid Froude number is responsible for the stratified flow.The high boiling number results in large shear stress on the vapor-liquid interface,leading to the accumulation of the liquid in the microchannel downstream.This causes the increased liquid film thickness along the flow direction.
Keywords:MEMS  silicon microchannel  flow boiling  instability  stratified flow
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