首页> 外文会议>OMAE2010;International conference on ocean, offshore and arctic engineering >ANALYSIS OF EROSION AND FAILURE IN THE SUDDEN EXPANSION FRACTURING TUBINGOF DEEP GAS WELLS
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ANALYSIS OF EROSION AND FAILURE IN THE SUDDEN EXPANSION FRACTURING TUBINGOF DEEP GAS WELLS

机译:深层气井突然膨胀压裂管腐蚀与破坏分析

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With the increasing of flow rate during fracturing in deep gas well, the erosion of fracturing tubing is an issue of immense concern to the industry. Based on the Euler-Euler two - fluid theory, the numerical simulations have been performed to predict the flow field in the sudden expansion fracturing tubing. The velocity distributions and sand concentration profiles are obtained, and the simulation results show that separation and reflux come into being in the sudden expansion fracturing tubing when pumping sand slurries at high rate, and the sand concentration increases at some regions. The erosion and failure of the fracturing tubing are relevant to the sand concentration, the velocity and the impact angle. The erosion model was established with the erosion experiment, and the numerical simulation results were used to describe the erosion rate of sudden expansion fracturing tubing according to the established erosion models. The mainly erosion region obtained through the simulation is basically agree with the failure region of tubing during fracturing in deep gas wells.
机译:随着深层气井压裂过程中流量的增加,压裂油管的腐蚀已成为工业界极为关注的问题。基于Euler-Euler二流体理论,已经进行了数值模拟,以预测突然膨胀压裂油管中的流场。得到了速度分布和砂浓度分布图,模拟结果表明,高速率泵送砂浆时,突然膨胀压裂油管中发生了分离和回流,并且在某些区域砂浓度增加。压裂管的腐蚀和破裂与砂浓度,速度和冲击角有关。通过腐蚀实验建立了腐蚀模型,并利用数值模拟结果根据所建立的腐蚀模型描述了突然膨胀压裂油管的腐蚀速率。通过模拟获得的主要侵蚀区域与深层气井压裂过程中的油管破坏区域基本一致。

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