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A numerical study of flow field in a flapper-nozzle pilot valve with a moving flapper

机译:带有活动挡板的挡板喷嘴先导阀内流场的数值研究

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As we known that the flapper-nozzle pilot stage is a very vital part in converting the electric signals into hydraulic outputs between the torque motor and main spool in the electro-hydraulic servo-valve. The performance of the flapper-nozzle has a seriously impact on the capability of the entire system. This paper has presented the flow field characteristics in the pilot valve when the flapper is moving, which will reflect the real working conditions. The initial speed is imposed on the flapper which will insure it moving in a way of 2 DOF (Degree of Freedom). Meanwhile, for the reason of saving computational time-consuming, the flapper is substituted by a part of the standard servo-valve. During the simulation, the strategy of overset mesh is utilized to update the moving mesh. Then the simulation results are firstly compared with the experiment result. The results show that the numerical method used in this paper is able to predict the flow field of the flapper-nozzle pilot valve when the flapper is moving. Finally, the translation of the flapper, transient velocity field and the distribution of vorticity are presented. The results also show that the movement of the flapper can make the flow field be a disciplinary and dissymmetry one, the vorticity of the flow field is also more complex but periodicity.
机译:众所周知,襟翼喷嘴先导级是将电信号转换为电动液压伺服阀中扭矩电机和主阀芯之间液压输出的关键部分。挡板喷嘴的性能严重影响了整个系统的性能。本文介绍了挡板移动时先导阀的流场特性,该特性将反映实际工作条件。初始速度施加在挡板上,以确保挡板以2 DOF(自由度)的方式移动。同时,出于节省计算时间的原因,挡板被标准伺服阀的一部分替代。在仿真过程中,采用了覆盖网格策略来更新运动网格。然后将仿真结果与实验结果进行比较。结果表明,本文所使用的数值方法能够预测挡板运动时挡板-喷嘴先导阀的流场。最后,给出了挡板的平移,瞬态速度场和涡度分布。结果还表明,挡板的运动可以使流场成为学科和不对称的流场,其流场的涡度也比较复杂,但具有周期性。

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