微通道
整改
材料科学
喷嘴
整流器(神经网络)
扩散器(光学)
微流控
微电子机械系统
流量(数学)
涡流
频道(广播)
光电子学
电子工程
计算机科学
机械
机械工程
电气工程
纳米技术
电压
工程类
光学
物理
电信
机器学习
循环神经网络
人工神经网络
光源
随机神经网络
作者
Chien‐Hsiung Tsai,Che‐Hsin Lin,Lung‐Ming Fu,Hui‐Chun Chen
出处
期刊:Biomicrofluidics
[American Institute of Physics]
日期:2012-04-13
卷期号:6 (2)
被引量:26
摘要
A high-performance microfluidic rectifier incorporating a microchannel and a sudden expansion channel is proposed. In the proposed device, a block structure embedded within the expansion channel is used to induce two vortex structures at the end of the microchannel under reverse flow conditions. The vortices reduce the hydraulic diameter of the microchannel and, therefore, increase the flow resistance. The rectification performance of the proposed device is evaluated by both experimentally and numerically. The experimental and numerical values of the rectification performance index (i.e., the diodicity, Di) are found to be 1.54 and 1.76, respectively. Significantly, flow rectification is achieved without the need for moving parts. Thus, the proposed device is ideally suited to the high pressure environment characteristic of most micro-electro-mechanical-systems (MEMS)-based devices. Moreover, the rectification performance of the proposed device is superior to that of existing valveless rectifiers based on Tesla valves, simple nozzle/diffuser structures, or cascaded nozzle/diffuser structures.
科研通智能强力驱动
Strongly Powered by AbleSci AI