首页> 外文会议>International energy conversion engineering conference >Heat Transfer Analysis for Solenoid-Valve in Hydraulic Servo Actuator of Aero Engine Thrust Vector Nozzle
【24h】

Heat Transfer Analysis for Solenoid-Valve in Hydraulic Servo Actuator of Aero Engine Thrust Vector Nozzle

机译:航空发动机推力矢量喷嘴液压伺服执行器中螺线管阀传热分析

获取原文

摘要

This paper proposes a cooling approach, which creates a flow channel outside the fixing screw sleeve of the solenoid-valve. The effectiveness of this cooling approach is demonstrated by a three-dimensional computational fluid dynamic simulation of the flow channel and a heat transfer analysis. The effects of the inlet temperature of cooling medium and the environment temperature and the inlet flow rate of cooling medium on the temperature of the solenoid-valve were studied. With the increase of the inlet flow rate, the velocity of the flow field is increase, which caused the convective heat transfer coefficient to increase. Under the same conditions, the temperature of solenoid-valve with the cooling approach is lower than the solenoid-valve without the cooling approach, when the inlet flow rate is increased from 0.127L/min to 0.45L/min, the temperature of the solenoid-valve is reduced by 17%. When inlet flow rate is 0.3L/min, the environment temperature is in the range of 215~250 °C and the inlet temperature of cooling medium is in the range of 70~110 °C, the solenoid-valve temperature increases 8.9°C when the inlet temperature of cooling medium increases 10'C with the environment temperature unchanged.
机译:本文提出了一种冷却方法,它在螺线管阀的固定螺纹套筒外产生流动通道。通过流动通道的三维计算流体动态模拟和传热分析,证明了这种冷却方法的有效性。研究了冷却介质的入口温度和环境温度的影响以及冷却介质对电磁阀温度的进气速率。随着入口流量的增加,流场的速度增加,导致对流传热系数增加。在相同的条件下,当入口流速从0.127L / min增加到0.45L / min时,电磁阀的电磁阀的温度低于电磁阀而没有冷却方法,螺线管的温度-Valve减少了17%。当入口流速为0.3L / min时,环境温度在215〜250°C的范围内,冷却介质的入口温度在70〜110°C的范围内,电磁阀温度升高为8.9°C当冷却介质的入口温度随着环境温度不变而增加10'C时。

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