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PREDICTION OF LIQUID AND GAS LEAK RATES IN PACKED STUFFING BOXES

机译:包装填料箱中液体气体泄漏率的预测

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The prediction of gas and liquid leak rate through packed stuffing boxes subjected to gas flow is a subject of very few studies in the literature. For better prediction of leakage, the change of porosity with length due to the non-uniform axial stress must be accounted for. There are few theoretical models on the prediction of leak rates in packing rings with capillary models. However, a model that incorporates the change of the capillary area with stress gives a better prediction. In this paper, the first slip flow model is used to predict gas and liquid flow considering the straight capillaries and capillaries having an area dependent on the axial stress in the packing rings. An approach that uses an analytical-computational methodology based on the number and the size of pores obtained experimentally is adopted to predict gas and liquid leak rates in uniform and non-uniform compressed yarned packings. The Navier-Stokes equations associated with slip boundary condition at the wall are used to predict leakage. Experimental tests with helium, argon, nitrogen and air for gazes and water and kerosene for liquids will be used to validate the models. The porosity parameters characterization will be conducted experimentally with helium at a reference gas at different gland stresses and pressures.
机译:通过对气流进行气流的填充填料箱的气体和液体泄漏速率预测是在文献中非常少的研究的主题。为了更好地预测泄漏,必须考虑由于不均匀的轴向应力引起的长度的变化。用毛细管模型预测填料环的泄漏率的理论模型很少。然而,一种包含压力的毛细管区域变化的模型提供了更好的预测。在本文中,第一滑动流程模型用于预测考虑毛细管和毛细管的气体和液体流动,所述直毛细管和毛细管具有取决于填料环中的轴向应力。采用基于实验所获得的孔的数量和尺寸使用分析计算方法的方法来预测均匀和非均匀压缩的纱线填料的气体和液体泄漏速率。与壁的滑动边界条件相关联的Navier-Stokes方程用于预测泄漏。使用氦气,氩气,氮气和空气的实验试验,用于液体的凝胶和水和煤油的液体将用于验证模型。孔隙率参数表征将在不同的腺体应力和压力下在参考气体下通过氦进行实验进行。

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