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Numerical simulation and experiment of the annular pressure variation caused by gas kick/injection in wells

机译:井中气涌/注入引起的环空压力变化的数值模拟与实验

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Transient gas liquid two-phase flow usually occurs in wells because of gas inflow. The objective of this paper is to investigate the pressure variation in wellbore caused by gas kick/injection. A general and simple drift flux model based on Shi slip relation is presented for dynamic two-phase flow in wells. The model is numerically solved by the finite volume method and AUSMV scheme. Moreover, a laboratory experiment is implemented to simulate the process of gas kick/injection for a high gas volume fraction. The pressures at different depths of the test section of the annular tube are measured, and the change of the flow behavior is observed during the experiment. The laboratory experiment results and the data of a full-scale experiment provided by Lage et al. (2003) indicate that the annular pressures increase at first and subsequently decrease during the process of gas injection in the experiments, and the pressure increases slightly in the real well. Comparisons between the simulation results and the data of the two experiments show fair agreement in terms of the pressure. The simulation results indicate that the gas and liquid mass flow rates and well depth have a strong influence on the variation of the bottom pressure caused by gas kick/injection. The liquid viscosity slightly affects the variation of the bottom pressure. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于气体的流入,通常在井中发生瞬时气液两相流动。本文的目的是研究由气涌/注入引起的井筒压力变化。提出了一种基于Shi滑移关系的通用简单漂移通量模型。该模型通过有限体积法和AUSMV方案进行数值求解。此外,还实施了一个实验室实验来模拟高气体体积分数下的气体反冲/注入过程。测量在环形管的测试部分的不同深度处的压力,并且在实验期间观察流动行为的变化。 Lage等人提供的实验室实验结果和全面实验的数据。 (2003年)表明,在实验中的气体注入过程中,环形压力先增加,然后降低,而在实际井中,压力略有增加。仿真结果与两个实验数据之间的比较表明,在压力方面,协议是一致的。模拟结果表明,气,液质量流量和井深对由气涌/注入引起的井底压力变化有很大的影响。液体粘度会稍微影响底部压力的变化。 (C)2015 Elsevier B.V.保留所有权利。

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