首页> 外文期刊>Flow Measurement and Instrumentation >Development of a novel rotary flow control valve with an electronic actuator and a pressure compensator valve for a gas turbine engine fuel control system
【24h】

Development of a novel rotary flow control valve with an electronic actuator and a pressure compensator valve for a gas turbine engine fuel control system

机译:具有电子致动器的新型旋转流量控制阀的开发和用于燃气轮机燃料控制系统的压力补偿阀

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents a new rotary proportional flow control valve with Cam-Nozzle configuration. The rotating cam against the fixed nozzle changes the flow area and then can meter the fuel flow. This valve equipped with a pressure compensator plunger type valve to retaining constant pressure difference across the flow control or metering valve. The cam shaft directly coupled to an electronic servomotor type rotary actuator and then it is possible to apply digital control techniques such as pulse width modulation (PWM) in this control system. This new valve configuration is developed for an electro hydro mechanical fuel control system in a gas turbine engine. In addition to aero engine application, this type of flow metering valve can widely be used in industrial hydraulic systems. In this unit, the output flow is proportional to the cam's angular position (or throttle command) and it is not sensitive to pressure fluctuations at nozzle inlet and outlet. The aim of this new design is to modify a manual single adjusted hydro-pneumatic fuel control unit to obtain a new electro-hydraulic fuel control system for a gas turbine engine. The main innovations in the presented fuel metering unit include new design of the rotary valve opening shape (Cam-Nozzle) without metal to metal contact, use of a rotary electronic actuating mechanism and also direct coupling between the actuator and the rotating cam. The increased fuel metering precision in the new flow control valve has improved the ultimate control accuracy of system. A computer simulation software based on the proposed model, is performed to predict the steady state and transient performance and to analyze effect of important design parameters on valve outlet fuel flow and obtain the final design parameters. The validity of the proposed valve configuration is assessed experimentally in the steady state and transient modes of operation. The results show good agreement between simulation and experimental in both modes (max. 4% deviation).
机译:本文介绍了具有凸轮喷嘴配置的新型旋转比例流量控制阀。旋转凸轮抵靠固定喷嘴改变流量区域,然后可以仪表燃料流动。该阀门配备了压力补偿器柱塞型阀,以保持流量控制或计量阀的恒压差。凸轮轴直接耦合到电子伺服电动机型旋转致动器,然后可以在该控制系统中应用诸如脉冲宽度调制(PWM)的数字控制技术。这种新的阀门配置是为燃气涡轮发动机中的电力机械燃料控制系统开发的。除了航空发动机应用外,这种类型的流量计量阀还可以广泛用于工业液压系统。在该单元中,输出流量与凸轮的角位置(或节气门命令)成比例,并且对喷嘴入口和出口处的压力波动不敏感。这种新设计的目的是修改手动单调的水压气动燃料控制单元,以获得用于燃气涡轮发动机的新型电动液压燃料控制系统。所提出的燃料计量单元的主要创新包括旋转阀开口形状(凸轮喷嘴)的新设计,无需金属与金属接触,使用旋转电子致动机构并且在致动器和旋转凸轮之间直接联接。新流量控制阀中的燃油计量精度提高了系统的最终控制精度。基于所提出的型号的计算机仿真软件进行预测,以预测稳态和瞬态性能,并分析重要设计参数对阀门出口燃料流量的影响,并获得最终设计参数。在实验中,在稳定状态和瞬态操作模式下通过实验评估所提出的阀门配置的有效性。结果表明,两种模式(最大4%)之间的模拟和实验之间的良好一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号