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Application of non-uniform film thickness concept in predicting deviated gas wells liquid loading

机译:非均匀膜厚概念在气井斜井液量预测中的应用

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摘要

Liquid loading causes undesirable occurrences such as premature death of wells, as well as significant reduction in production. However, most available models consider vertical wells and only a few focus on deviated gas wells. In order to reduce the impact of liquid loading on gas production, gas well load-up should be diagnosed at its early stage so as to proffer adequate solution. Unfortunately, most gas wells will experience liquid loading at some stage or point in their production life. Therefore, it is of utmost importance to predict liquid loading at the early life of such wells in order to develop apt liquid management strategies as corrective measures. Liquid film flow reversal concept has been identified as one of the major concepts responsible for the occurrence of liquid loading in deviated gas wells. This study develops an improvement on Chen’s liquid loading model. The model specifically introduces the concept of non-uniform film thickness around the pipe wall, as against previous works which considered uniform film thickness. A modified friction factor is also introduced to account for large film thicknesses around the pipe wall. Results from the model were compared with those of previous models, and data from published literature was used to validate the new model. The new model gave accurate predictions for 11 of 12 unloaded wells while for the loaded wells, the estimated data gave accuracies for 29 out of 30 loaded wells. This then implies that the new model is accurate for predicting liquid loading in deviated gas wells.
机译:液体装载会导致不良情况的发生,例如井的过早死亡以及产量的大幅下降。但是,大多数可用的模型都考虑垂直井,只有少数几个集中在偏斜气井上。为了减少液体负荷对产气量的影响,应在早期阶段就对气井负荷进行诊断,以便提供适当的解决方案。不幸的是,大多数气井在其生产寿命的某个阶段或某个阶段会经历液体负荷。因此,最重要的是预测此类井的早期液体装载量,以制定适当的液体管理策略作为纠正措施。液膜流逆转概念已被认为是造成偏斜气井中液体负荷发生的主要概念之一。这项研究对Chen的液体装载模型进行了改进。该模型特别引入了管壁周围膜厚不均匀的概念,这与先前的研究认为膜厚均匀的概念不同。还引入了改进的摩擦系数,以解决管壁周围的较大薄膜厚度。将模型的结果与先前模型的结果进行比较,并使用已发表文献中的数据来验证新模型。新模型对12口卸载井中的11口进行了准确的预测,而对于负载井,估算数据给出了30口负载井中29口的准确度。这意味着新模型对于预测偏斜气井中的液体负荷是准确的。

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