首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >MECHANISTIC MODELING OF DYNAMIC ZERO-NET LIQUID HOLDUP (ZNLH) IN GAS-LIQUID CYLINDRICAL CYCLONE (GLCC) SEPARATOR
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MECHANISTIC MODELING OF DYNAMIC ZERO-NET LIQUID HOLDUP (ZNLH) IN GAS-LIQUID CYLINDRICAL CYCLONE (GLCC) SEPARATOR

机译:气液圆柱旋风(GLCC)隔板中动态零净液体储存(ZnLH)的机械建模

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Over the past 2 decades, GLCC compact separators have been replacing the conventional vessel type separators in the Oil & Gas Industry, because of its numerous advantages. Despite these advantages, GLCC separators face two critical problems affecting the performance under extreme operating conditions, namely, Liquid Carry Over (LCO) into the gas leg and Gas Carry Under (GCU) into the liquid leg. This study focuses on the LCO phenomenon. Having a deeper insight into the LCO flow phenomenon helps us to enhance the technical performance of GLCC at these extreme conditions. Several studies were presented in the past on experimental investigations and mechanistic modeling of LCO. In the above cases, mechanistic modeling of LCO was based on Zero Net liquid Holdup (ZNLH) parameter. The liquid holdup in the upper part of the GLCC before it is blown out by gas flow is referred to as ZNLH. ZNLH is an important phenomenon affecting the GLCC pressure behavior and performance characteristics. Above mentioned experimental investigations performed to calculate ZNLH were carried out under static conditions where the effects of superficial liquid velocities were neglected. Investigations have been carried out in this study under dynamic conditions to evaluate the effect of superficial liquid velocities on ZNLH. We found that Dynamic ZNLH results are different from static ZNLH data as they show lower liquid holdup for the same gas velocities. A mechanistic model is proposed in this study to predict dynamic ZNLH and this model is validated against the dynamic ZNLH experimental data. It may be noted that a suitable ZNLH model will help in improving the predictions of the LCO mechanistic model considerably.
机译:在过去的2年中,由于其许多优点,GLCC紧凑型分离器已经取代了石油和天然气行业中的传统船舶型分离器。尽管有这些优势,GLCC分离器面临两个影响极端操作条件下性能的关键问题,即液体携带(LCO)进入气腿和气体携带(GCU)进入液体腿部。这项研究侧重于LCO现象。对LCO流现象的深入了解有助于我们在这些极端条件下提高GLCC的技术性能。过去介绍了几次研究关于LCO的实验研究和机械建模。在上述情况下,LCO的机械建模基于零净液体储存(ZnLH)参数。通过气流吹出之前GLCC的上部的液体叠加被称为ZnLH。 Znlh是影响GLCC压力行为和性能特征的重要现象。上述对计算ZnLH进行的实验研究在静态条件下进行,其中浅表液体速度的影响被忽略。在该研究中在动态条件下进行了调查,以评估浅表液体速度对ZnLH的影响。我们发现动态ZnLH结果与静态ZnLH数据不同,因为它们显示了相同气体速度的较低液体储存。本研究提出了一种机械模型,以预测动态ZnLH,并且该模型针对动态ZnLH实验数据验证。可以注意到,合适的ZnLH模型将有助于提高LCO机械模型的预测。

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