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Sensitivity of Slug Flow Mechanistic Models on Slug Length

机译:弹头长度上弹头流动机理模型的敏感性

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摘要

Slug flow is one of the common flow patterns in gas and oil production and transportation. One of the closure relationships required by the multiphase flow mechanistic models is slug length correlation. There are several closure relationships proposed in the literature as function of pipe geometry, pipe diameter, and inclination angle, and to a lesser extent to the flow rates and fluid properties. In this paper, we show that most of the frequently used mechanistic models are insensitive to slug length information. The only exception to this is identified as the Zhang et al. (2003, "Unified Model for Gas-Liquid Pipe Flow via Slug Dynamics-Part 1: Model Development," ASME J. Energy Resour. Technol., 125, pp. 266-272). The unified model shows sensitivity at high gas flow rates, while displaying a negligible sensitivity at low gas flow rates. In conclusion, the slug length closure relationship is not crucial for pressure loss and holdup calculations. It can be speculated that the success of the unit cell slug flow modeling approach could be attributed to insensitivity of the models to slug length considering the highly probabilistic nature of the slug length.
机译:塞流是天然气和石油生产和运输中常见的流态之一。多相流力学模型要求的闭合关系之一是段塞长度相关性。在文献中提出了几种与管道几何形状,管道直径和倾角有关的闭合关系,并在较小程度上影响了流速和流体特性。在本文中,我们表明大多数常用的机械模型对段塞长度信息不敏感。唯一的例外是Zhang等人。 (2003,“通过段塞动力学的气液管道流动的统一模型,第1部分:模型开发”,ASME J.能源资源技术,125,第266-272页)。统一模型在高气体流量下显示灵敏度,而在低气体流量下显示微不足道的灵敏度。总之,段塞长度的闭合关系对于压力损失和滞留量的计算不是至关重要的。可以推测,考虑到段长的高度概率性,单元格段流建模方法的成功可以归因于模型对段长的不敏感性。

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