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Transient Characteristics of a Fluidic Device for Circulatory Jet Flow

机译:循环射流的流体装置的瞬态特性

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摘要

In this paper, we report on the design, simulation, and experimental analysis of a miniaturized device that can generate multiple circulated jet flows. The device is actuated by a lead zirconate titanate (PZT) diaphragm. The flows in the device were studied using three-dimensional transient numerical simulation with the programmable open source OpenFOAM and was comparable to the experimental result. Each flow is verified by two hotwires mounted at two positions inside each consisting chamber. The experiment confirmed that the flow was successfully created, and it demonstrated good agreement with the simulation. In addition, a prospective application of the device as an angular rate sensor is also demonstrated. The device is robust, is minimal in size, and can contribute to the development of multi-axis fluidic inertial sensors, fluidic amplifiers, gas mixing, coupling, and analysis.
机译:在本文中,我们报告了可产生多种循环射流的小型化设备的设计,仿真和实验分析。该设备由锆钛酸铅(PZT)隔膜驱动。使用三维三维瞬态数值模拟和可编程的开放源代码OpenFOAM对设备中的流动进行了研究,与实验结果相当。每条流由安装在每个组成室内部两个位置的两条热线验证。实验证实该流已成功创建,并且与仿真显示出良好的一致性。此外,还展示了该设备作为角速度传感器的预期应用。该设备坚固耐用,尺寸极小,可有助于开发多轴流体惯性传感器,流体放大器,气体混合,耦合和分析。

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