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Using compliant membranes for dynamic flow stabilization in microfluidic systems

机译:使用顺应性膜在微流体系统中实现动态流动稳定

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This paper presents a simple and novel device to stabilize a fluctuating fluid flow in microfluidic systems. The device consists of a microchannel and several compliant membranes in series on one or more walls of the channel. Vibrations of the compliant membranes are used to remove fluctuations in an incoming flow, resulting in nearly constant outlet flow rates and inlet pressures. A lumped-parameter model was developed to simulate the device operation. Testing of prototype devices demonstrates that the device is able to stabilize a pulsating flow by a flow rate stabilization ratio up to 20.
机译:本文提出了一种用于稳定微流体系统中波动流体流动的简单新颖的装置。该设备由一个微通道和在通道的一个或多个壁上串联的多个顺应膜组成。顺应膜的振动用于消除进入的流量中的波动,从而使出口流量和入口压力几乎保持恒定。开发了集总参数模型来模拟设备操作。对原型设备的测试表明,该设备能够以高达20的流量稳定比来稳定脉动流。

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