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Simulation and Experimental Study on Fishing Performance of Vacuum Suction Wellbore Cleaning Tool

机译:真空吸井筒清洗工具捕鱼性能模拟与实验研究

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摘要

During the completion of shale gas wells, bridge plug debris and debris particles are often left at the bottom of the well, which are difficult to clean up, pose a serious risk to wellbore operations, and reduce productivity. In order to solve the difficulty of cleaning the debris at the bottom of the well, a kind of wellbore cleaning tool is proposed based on the principle of negative jet pressure and liquid-solid two-phase flow theory. The finite element analysis method and laboratory test were used to verify the function of cleaning tools: the finite element method can effectively reflect the principle and process of dredging bottom debris with cleaning tools. In order to improve the applicability and fishing ability of wellbore cleaning tools, factors influencing the performance of cleaning tools were analyzed as follows: choosing high-density and low-viscosity working fluid is beneficial to improve the negative pressure effect of cleaning tools. Under the conditions of wellbore safety and economy, increasing pump pressure and displacement and reducing annular pressure can effectively increase the fishing performance of cleaning tools.
机译:页岩气井完井过程中,井底常残留桥塞杂物和杂物颗粒,难以清理,对井筒作业构成严重风险,降低生产率。为解决井底杂物清理困难的问题,提出了一种基于负射流原理和液固两相流理论的井筒清理工具。采用有限元分析法和室内试验验证了清理工具的作用:有限元方法能有效反映用清理工具疏浚底部杂物的原理和过程。为提高井筒清洗工具的适用性和捕鱼能力,分析了影响井筒清洗工具性能的因素如下:选择高密度、低粘度的工质有利于提高清洗工具的负压效果。在井筒安全经济的条件下,提高泵压和排量,降低环空压力,可以有效提高清洗工具的捕捞性能。

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