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使用计算流体动力学 (CFD) 对气动节气门止回阀进行数值模拟。

Numerical simulation of pneumatic throttle check valve using computational fluid dynamics (CFD).

机构信息

The Faculty of Mechanical Engineering and Aeronautics, Department of Aerospace Engineering, Rzeszow University of Technology, av. Powstańców Warszawy 8, 35-959, Rzeszów, Poland.

Institute of Materials Engineering, College of Natural Sciences, University of Rzeszow, Pigonia 1, 35-310, Rzeszów, Poland.

出版信息

Sci Rep. 2023 Feb 11;13(1):2475. doi: 10.1038/s41598-023-29457-4.

Abstract

The article presents a numerical CFD simulation of a throttle-check valve used in an innovative control system for two pneumatic drives. This type of control is used in an innovative rehabilitation device for lower limbs. In order to determine the boundary conditions, experimental tests were carried out. The throttle valves on the test stand were scaled and the air flow rate values were read for different valve opening heights. The purpose of this article is to present a CFD simulation of a pre-adjusted check valve throttle. Numerical simulation (CFD) makes it possible to study the flow phenomena inside a pneumatic throttle-check valve, with different sizes of flow gaps. The obtained results made it possible to determine the distribution of physical quantities of static pressure, the velocity of the medium flowing through the valve, or the vector velocity distribution. The throttle valve assembly has been scaled for a suitable degree of synchronization of the movement of the piston actuators independently of the different external loads acting on each of them. The authors investigated airflow phenomena for different valve opening heights. The simulation provided information on the occurrence of supersonic and subsonic flow velocities at specific valve opening heights.

摘要

本文对一种新型控制系统中用于两个气动驱动器的节流止回阀进行了数值 CFD 模拟。这种控制方式用于新型下肢康复设备。为了确定边界条件,进行了实验测试。在试验台上对节流阀进行了缩放,并读取了不同阀口开度下的空气流量值。本文的目的是介绍预调节止回阀节流的 CFD 模拟。数值模拟(CFD)可用于研究不同流量间隙的气动节流止回阀内的流动现象。获得的结果可以确定静压物理量的分布、通过阀的介质的速度或矢量速度分布。节流阀组件已按比例缩小,以便独立于作用于每个活塞执行器的不同外部负载来同步活塞执行器的运动。作者研究了不同阀口开度下的气流现象。模拟提供了有关在特定阀口开度下发生超音速和亚音速流速的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62de/9922259/72ba9644b5a9/41598_2023_29457_Fig1_HTML.jpg

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