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首页> 外文期刊>Journal of nuclear engineering and radiation science >Leakage Estimate in Nonuniformly Compressed Packing Rings
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Leakage Estimate in Nonuniformly Compressed Packing Rings

机译:泄漏估计在非均匀压缩包装环中

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摘要

Characterizing the permeation performance of nanoporous material is an initial step toward predicting microflows and achieving acceptable designs in sealing and filtration applications. This study deals with analytical, numerical, and experimental studies of gaseous leaks through soft packing materials subjected to nonuniform axial compression in valve stuffing boxes. A new analytical model that accurately predicts gaseous leak rates through nanoporous packing materials assumed made of capillaries having an exponentially varying section. Based on Navier-Stokes equations with the first-order velocity slip condition for tapered cylinder capillaries, the analytical model is used to estimate gas flow through soft packing materials. In addition, computational fluid dynamic modeling using CFX software is used to test its capacity to estimate the permeation of compression packing ring materials assuming the fluid flow to follow Darcy's law. Helium gas is used as a reference gas in the experiments to characterize the porosity parameters. The analytical and CFX numerical leak predictions are compared to leak rates measured experimentally using different gas types (helium, nitrogen, air, and argon) at different pressures and gland stresses. The analytical and numerical models account for the porosity change with the stem axial distance because the packing ring set is subjected to an exponentially varying radial compression. The predictions from analytical model are in close agreement with the CFX model and in better agreement with experimental measurements.
机译:表征纳米多孔材料的渗透性能是预测微流并在密封和过滤应用中实现可接受设计的第一步。本研究对阀门填料函中受到非均匀轴向压缩的软填料进行气体泄漏的分析、数值和实验研究。一种新的分析模型,可以准确预测通过纳米多孔填料的气体泄漏率,该材料假定由截面呈指数变化的毛细管构成。基于具有锥形圆柱毛细管一阶速度滑移条件的Navier-Stokes方程,利用解析模型估算了气体流经软填料的流量。此外,假设流体流动遵循达西定律,使用CFX软件进行计算流体动力学建模,以测试其估算压缩填料环材料渗透的能力。实验中使用氦气作为参考气体来表征孔隙度参数。将分析和CFX数值泄漏预测与在不同压力和压盖应力下使用不同气体类型(氦气、氮气、空气和氩气)实验测量的泄漏率进行比较。分析和数值模型考虑了孔隙度随阀杆轴向距离的变化,因为填料环组受到指数变化的径向压缩。从分析模型得到的预测与CFX模型非常一致,并且与实验测量结果更加一致。

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