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Application of the gamma radiation method in analysing the effect of liquid viscosity and flow variables on slug frequency in high viscosity oil-gas horizontal flow

机译:伽马辐射法在分析高黏度油气水平流中液体黏度和流量变量对段塞频率的影响中的应用

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Published experimental observations of high viscosity liquid-gas horizontal flows have indicated that hydrodynamic slug flow is the commonest flow regime encountered over a wide range of flow conditions. Since hydrodynamic slugging generates high pressure fluctuations capable of damaging production pipelines, it is necessary to understand the complex characteristics of high viscosity slug flow regime through the analysis of one of its key parameters namely, slug frequency. Investigating slug parameters is crucial, especially when existing slug flow models used in the Petroleum Industry are not suitable for predicting the behaviour of high viscosity oil-gas flow. This is because most existing empirical correlations for predicting slug parameters are based on low viscosity liquid-gas flows which have different hydrodynamic features compared to high viscosity liquid-gas flows. In Cranfield University, an experimental investigation of high viscosity oil-air flow was performed to study the effect of liquid viscosity and flow variables on hydrodynamic slug flow. Experiments were conducted at liquid superficial velocities (V_(so)) and gas superficial velocities (V_(sg)) ranging from 0.06 m/s to 2.0 m/s and 0.0 m/s to 4.0 m/s respectively. For each experimental run, a single-beam gamma densitometer was used to measure slug frequency. The effect of liquid viscosity (μ) on the measured slug frequency was investigated for the range of 1100 cP to 4000 cP. When compared against measured high viscosity slug frequency data, none of the existing empirical correlations used were able to produce accurate predictions. The predicted results tend to diverge from experimental data by several orders of magnitude. Given this context, a new empirical correlation for slug frequency was proposed. The new empirical slug frequency correlation was compared against an independent experimental dataset. The comparison indicated that the new empirical correlation performed better than existing correlations in predicting slug frequency of high viscosity liquid-gas flows.
机译:已发表的对高粘度液-气水平流的实验观察表明,流体动力段塞流是在各种流动条件下遇到的最常见的流态。由于流体动力段塞产生的高压波动会损害生产管道,因此有必要通过分析段塞频率的关键参数之一来了解高粘度段塞流态的复杂特性。研究段塞参数至关重要,尤其是当石油工业中使用的现有段塞流模型不适合预测高粘度油气流的行为时。这是因为大多数现有的用于预测段塞参数的经验相关性都是基于与高粘度液-气流量相比具有不同流体动力学特征的低粘度液-气流量。在克兰菲尔德大学,对高粘度油气流进行了实验研究,以研究液体粘度和流量变量对流体动力段塞流的影响。实验分别在0.06 m / s至2.0 m / s和0.0 m / s至4.0 m / s的液体表面速度(V_(so))和气体表面速度(V_(sg))范围内进行。对于每个实验运行,均使用单光束伽马密度计测量弹头频率。在1100 cP至4000 cP的范围内,研究了液体粘度(μ)对测得的段塞频率的影响。当与测得的高粘度团块频率数据进行比较时,所使用的现有经验相关性均无法产生准确的预测。预测结果往往与实验数据相差几个数量级。在这种情况下,提出了一种对频率的新的经验相关性。将新的经验段塞频率相关性与独立的实验数据集进行了比较。比较结果表明,新的经验相关性在预测高粘度液-气流动的段塞频率方面表现优于现有的相关性。

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