首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >A novel micromachined flow sensor using periodic flapping motion of a planar jet impinging on a V-shaped plate
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A novel micromachined flow sensor using periodic flapping motion of a planar jet impinging on a V-shaped plate

机译:一种新颖的微机械流量传感器,利用平面射流的周期性拍打运动撞击V形板上

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摘要

Here we present a novel micromachined flow sensor capable of detecting small amounts of volumetric flow rates (down to 2 nl/s) and extra-low flow velocities (down to 0.15 mm/s). The innovative flow sensor detects a periodic flapping motion of a planar jet impinging on a V-shaped plate downstream. Instead of sensing DC current or voltage signals induced by small volumes of the flow, the microflow sensor detects the oscillating frequency of the periodic flapping jet, resulting in a higher sensitivity and a larger dynamic range than that of the existing products. The microflow sensor is fabricated on a quartz substrate using wet chemical etching and metal masks. It is composed of a planar convergent nozzle, a V-shaped plate downstream and a pair of sensing resistors. The microflow sensor is characterized both optically and electrically. First, a dye-containing sample flow is used to visualize the flapping motion of the impinging jet under a microscope. Flapping motion is confirmed experimentally even at a low flow velocity (0.15 mm/s). Then, the flapping frequency is detected using built-in microsensing resistors driven by a constant-current circuit. Data from microscopic flow visualization and electrical sensing are highly consistent. It indicates that even in microscale the flow velocity is still linearly proportional to the frequency of the jet flapping motion. Therefore, the velocity or volumetric flow rate of small amounts of the flow can be measured by detecting the flapping frequency. Note that the test Reynolds number ranges from 0.2 to 5.4 in the present study. It is the first time that low-Reynolds-number flow is reported with a flapping motion for flow impinging on a V-shaped plate. The microflow sensor can be applied in various fields, including biomedical detection, micrototal analysis system, smart fluidics etc. (C) 2002 Elsevier Science Inc. All rights reserved. [References: 22]
机译:在这里,我们介绍了一种新型的微机械流量传感器,它能够检测少量的体积流量(低至2 nl / s)和超低流速(低至0.15 mm / s)。创新型流量传感器可检测到撞击在下游V形板上的平面射流的周期性拍打运动。微流量传感器不是检测小流量引起的直流电流或电压信号,而是检测周期性拍打射流的振荡频率,从而比现有产品具有更高的灵敏度和更大的动态范围。使用湿法化学蚀刻和金属掩模将微流量传感器制造在石英基板上。它由一个平面的会聚喷嘴,一个下游的V形板和一对感应电阻组成。微流量传感器具有光学和电气特性。首先,使用含染料的样品流在显微镜下观察撞击射流的拍打运动。即使在低流速(0.15 mm / s)时,也可以通过实验确认拍打运动。然后,使用由恒流电路驱动的内置微感应电阻来检测拍动频率。来自微观流动可视化和电传感的数据高度一致。它表明即使在微尺度上,流速仍然与射流拍打运动的频率成线性比例。因此,可以通过检测拍动频率来测量少量流量的速度或体积流量。注意,在本研究中,测试雷诺数范围为0.2到5.4。这是首次报告低雷诺数流量发生拍打运动,该冲击波撞击在V形板上。微流量传感器可应用于各种领域,包括生物医学检测,微量总量分析系统,智能流体技术等。(C)2002 Elsevier Science Inc.保留所有权利。 [参考:22]

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