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A Theoretical and Experimental Study on Characteristics of Water-Lubricated Double Spiral-Grooved Seals

机译:水润滑双螺旋槽密封件特性的理论和实验研究

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摘要

The spiral-grooved seal is a prime candidate for application to liquid oxygen (LOX) turbopumps. A theoretical model of double spiral-grooved seals dealing with the viscosity- temperature relation is presented. The effect of operating parameters (rotational speed, supply pressure) and configurative parameters (depth of spiral groove) on the basic static characteristics (opening force, leakage, static friction torque, face temperature, and power loss) of double spiral-grooved seals are examined. Comparisons are presented between measurements and theoretical predications for a narrow spiral-grooved face seal with an average diameter of 100 mm, operating at high speed and using water as a test fluid. The theoretical and experimental results indicate that the temperature on seal faces rises and friction torque increases with the speed and supply pressure, and these increases vary slightly with the depth of the spiral groove. These findings lend great theoretical and experimental insights to the design of face seals applied in liquid engine turbopumps.
机译:螺旋槽密封是用于液态氧(LOX)涡轮泵的主要候选材料。建立了双螺旋沟槽密封件处理粘度-温度关系的理论模型。操作参数(转速,供给压力)和配置参数(螺旋槽深度)对双螺旋槽密封件的基本静态特性(打开力,泄漏,静摩擦扭矩,表面温度和功率损耗)的影响为检查。给出了平均直径为100 mm的窄螺旋槽端面密封的测量值与理论预测值之间的比较,该端面高速运行且使用水作为测试液。理论和实验结果表明,密封面的温度升高,摩擦转矩随速度和供给压力的增加而增加,并且这些增加随螺旋槽深度的变化而略有变化。这些发现为液体发动机涡轮泵中的面密封设计提供了巨大的理论和实验见解。

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