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Study of mechanical choked Venturi nozzles used for liquid flow controlling

机译:用于液体流动控制的机械窒伤的文丘里喷嘴研究

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Motivated by the principles of the cavitating Venturi nozzle (CVN) used for controlling fluid flow and addressing limitations of CVN, this paper proposes a mechanical choked Venturi nozzle (MCVN) which achieves choking flow via a mechanical action. The MCVN is constructed by inserting a floating springed blockage into a Venturi nozzle to imitate the bubble dynamics of CVN. First, an initial MCVN design was derived theoretically. Then, using numerical simulation and an iterative procedure, this original design was corrected to build an optimized design. Finally, the optimized design was investigated and tested both numerically and experimentally. The experimental results show that the MCVN can maintain constant flow with a flow control error of 3.8% and a maximum back pressure ratio of 0.97. Since MCVN can achieve constant flow without fluid vaporization, the pressure ratio range for applying a choking flow device is expanded and some limitations of CVN are overcome. The principles and experimental results obtained in this research can be used as a framework for the design of improved constant flow control devices for liquid flow.
机译:本文提出了一种用于控制流体流动和寻址CVN的局限性的空化文丘里喷嘴(CVN)的原理,提出了一种机械窒息的文丘里喷嘴(MCVN),其通过机械作用实现窒息流动。通过将浮动弹簧堵塞插入文丘里喷嘴来构造MCVN以模仿CVN的气泡动态。首先,理论上源自初始MCVN设计。然后,使用数值模拟和迭代程序,纠正了这种原创设计以构建优化的设计。最后,在数值和实验上调查并测试了优化的设计。实验结果表明,MCVN可以保持恒定的流量,流量控制误差为3.8%,最大背压比为0.97。由于MCVN可以在没有流体蒸发的情况下达到恒定流动,因此扩展了用于施加窒息流动装置的压力比范围,并且克服了CVN的一些限制。本研究中获得的原理和实验结果可用作设计改进的恒流控制装置的框架。

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