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Acoustical Communications for Wireless Downhole Telemetry Systems

机译:无线井下遥测系统的声学通信

摘要

This dissertation investigates the use of advanced acoustical communication techniques for wireless downhole telemetry systems. Using acoustic waves for downhole telemetry systems is investigated in order to replace the wired communication systems currently being used in oil and gas wells. While the acoustic technology offers great benefits, a clear understanding of its propagation aspects inside the wells is lacking. This dissertation describes a testbed that was designed to study the propagation of acoustic waves over production pipes. The wireless communication system was built using an acoustic transmitter, five connected segments of seven inch production pipes, and an acoustic receiver. The propagation experiments that were conducted on this testbed in order to characterize the channel behavior are explained as well. Moreover, the large scale statistics of the acoustic waves along the pipe string are described. Results of this work indicate that acoustic waves experience a frequency- dependent attenuation and dispersion over the pipe string. In addition, the testbed was modified by encasing one pipe segment in concrete in order to study the effect of concrete on wave propagation. The concrete was found to filter out many of the signal harmonics; accordingly, the acoustic waves experienced extra attenuation and dispersion. Signal processing techniques are also investigated to address the effects of multipaths and attenuation in the acoustic channel; results show great enhancements in signal qualities and the usefulness of these algorithms for downhole communication systems. Furthermore, to explore an alternative to vibrating the body of a cemented pipe string, a testbed was designed to investigate the propagation aspects of sound waves inside the interior of the production pipes. Results indicate that some low-frequency sound waves can travel for thousands of feet inside a cemented pipe string and can still be detected reliably.
机译:本文研究了先进的声学通信技术在无线井下遥测系统中的应用。为了替换当前在石油和天然气井中使用的有线通信系统,研究了将声波用于井下遥测系统。尽管声学技术带来了巨大的好处,但仍缺乏对其井内传播方面的清晰了解。本文介绍了一种旨在研究声波在生产管道上的传播的试验台。无线通信系统是使用声音发射器,五个连接的7英寸生产管道段和一个声音接收器构建的。还说明了在此测试床上进行的传播实验,以表征信道行为。而且,描述了沿管柱的声波的大规模统计。这项工作的结果表明,声波在管柱上经历了随频率变化的衰减和色散。另外,通过将一个管段包裹在混凝土中来对试验台进行改造,以研究混凝土对波浪传播的影响。发现混凝土可以滤除许多信号谐波。因此,声波经历了额外的衰减和扩散。还研究了信号处理技术以解决声波通道中多径和衰减的影响。结果表明,信号质量得到了极大的提高,并且这些算法在井下通信系统中也很有用。此外,为了探索振动水泥管柱体的替代方法,设计了一个试验台来研究声波在生产管道内部的传播情况。结果表明,一些低频声波可以在水泥管柱内传播数千英尺,并且仍可以可靠地检测到。

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    Farraj Abdallah;

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  • 年度 2013
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