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Analysis of Effective Operation Performance of Wireless Control Downhole Choke

机译:无线控制井下扼流圈有效运行性能分析

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Wireless control downhole throttle is designed to control the opening of downhole throttle remotely by ground pressure wave signal to regulate downhole production in a wireless and intelligent manner. The throttle’s production regulation capability and the noise immunity of the signal receiver are the key factors affecting the reliability of the throttle operation. Based on computational fluid dynamics (CFD) theory, the flow field of downhole throttle is simulated numerically to study the flow resistance characteristics of wireless control downhole throttle and the stability of flow field at signal receiver. Finally, the field test proves that the tool achieves the design capacity of production regulation and can accurately receive signals to regulate downhole production in a wireless and intelligent manner. The research content of this paper provides theoretical and experimental basis for the further improvement and optimization of the wireless control downhole throttle’s structure and has certain guiding significance for the field use of the throttle, achieving the purpose of downhole wireless intelligent production adjustment.
机译:无线控制井下油门设计用于通过地压波信号远程控制井下节气门的开口,以以无线和智能方式调节井下产生。节气门的生产调节能力和信号接收器的抗噪声是影响节流阀操作可靠性的关键因素。基于计算流体动力学(CFD)理论,井下节流阀的流场在数值上模拟,以研究无线控制井下节气门的流动性特性及信号接收器流场的稳定性。最后,现场测试证明该工具达到了生产规范的设计能力,可以准确地接收信号以以无线和智能方式调节井下生产。本文的研究内容为无线控制井下油门结构的进一步改进和优化提供了理论和实验依据,对油门的现场使用具有一定的指导意义,实现了井下无线智能生产调整的目的。

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