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Transient Pressure Fluctuation Effect During Gas Drilling in Horizontal Well

机译:水平井气钻过程中的瞬态压力波动效应

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摘要

Combining gas drilling technology with horizontal well drilling leads to improvement in production in oil and gas reservoirs. However, wellbore gas encountering high-pressure formation gas could bring substantial risks in gas drilling process. A theoretical model for pressure wave speed and attenuation coefficient in gaseous phase flow is established and analytically solved by classic fluid-mechanics model and small perturbation theory. The simulation results suggest that the main factors affecting the pressure wave are angular frequency, pipe diameter, and original pressure. In addition, a pressure wave test device is designed to validate the model, and the experimental results fit well with the simulation results. The work presented in this paper can provide a theoretical basis for horizontal section gas drilling and can also detect gas influx to ensure safety and prevent accidents.
机译:将气体钻井技术与水平井钻井相结合,导致油气储层生产的改善。 然而,蜂拥而至的高压形成气体可能会在气体钻井过程中带来大量风险。 经典流体 - 力学模型和小扰动理论建立和分析气相流动压力波速度和衰减系数的理论模型。 仿真结果表明,影响压力波的主要因素是角频率,管道直径和原始压力。 此外,压力波试验装置旨在验证模型,实验结果与模拟结果均匀。 本文提出的工作可以为水平段气钻提供理论依据,还可以检测气体流入,以确保安全性和防止事故。

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