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首页> 外文期刊>Journal of Zhejiang University. Science, A >Study on hydrodynamic vibration in fluidic flowmeter
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Study on hydrodynamic vibration in fluidic flowmeter

机译:流体流量计中的流体动力振动研究

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摘要

The characteristics of the fluidic flowmeter, which is a combination of impinged concave wall and bistable fluid amplifier, is investigated by experimental studies and numerical simulations. The numerical approaches are utilized to examine the time dependent flow field and pressure field inside the proposed flowmeter. The effect of varying structural parameters on flow characteristics of the proposed fluidic flowmeter is investigated by computational simulations for the optimization. Both the simulation and experimental results disclose that the hydrodynamic vibration, with the same intensity, frequency and 180° phase shift, occurs at axisymmetric points in the feedback channel of the fluidic flowmeter. Using the structural combination of impinged concave wall and bistable fluid amplifier and differential signal processing technique, a novel fluidic flowmeter with excellent immunity and improved sensibility is developed.
机译:通过实验研究和数值模拟,研究了冲击式凹壁和双稳态流体放大器相结合的流体流量计的特性。数值方法被用来检查所提出的流量计内部随时间变化的流场和压力场。通过计算仿真来研究结构参数变化对所提出的流体流量计的流量特性的影响。仿真和实验结果均表明,具有相同强度,频率和180°相移的流体动力振动发生在流体流量计的反馈通道的轴对称点处。利用冲击凹壁与双稳态流体放大器的结构组合以及差分信号处理技术,开发了一种具有出色抗扰性和改善灵敏度的新型流体流量计。

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