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Heat Transfer Experimental Investigation for Piston Rod Sensor in Hydraulic Servo Actuator of Hypersonic Combustion Ramjet Engine Vectoring Nozzle

机译:高超声速燃烧式燃烧器旋转件换热器中活塞杆传感器的传热试验研究

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摘要

We present an experimental study of a novel active cooling approach by the hydrocarbon fuel RP-3 flowing through a piston rod displacement-sensor in hydraulic servo-actuator. The temperature and pressure distributions of the experimental sample are compared under different thermal and flow parameters. Furthermore, two kinds of equivalent convective heat transfer coefficients on the inner and outer surfaces of the experimental sample are also calculated and analyzed. The results confirm that, our cooling approach can effectively protect the piston rod displacement-sensor from high ambient temperature and the flow rate of the cooling fuel through the piston rod displacement-sensor is the significant influence factor for the thermal protective performance. Under certain circumstances, with the decrease of the flow rate of the cooling fuel, the outlet fuel temperature increase and the equivalent convective heat transfer coefficient on the inner surface of the experimental sample decrease, obviously.
机译:我们在液压伺服致动器中流过活塞杆位移传感器的烃燃料RP-3的新型主动冷却方法的实验研究。在不同的热和流动参数下比较实验样品的温度和压力分布。此外,还计算并分析了实验样品的内表面和外表面上的两种等效对流传热系数。结果证实,我们的冷却方法可以有效保护活塞杆位移传感器从高环境温度和通过活塞杆位移传感器的冷却燃料的流速是热保护性能的显着影响因素。在某些情况下,随着冷却燃料的流速的降低,出口燃料温度升高,实验样品内表面上的等效对流传热系数降低,显然。

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