Shaft gas cut early-stage active monitoring method based on low-frequency elastic wave response characteristic

An elastic wave, low frequency technology, applied in the field of analysis and measurement control, can solve the problems of received signal energy attenuation, poor sensitivity and reliability, long acoustic wave propagation path, etc., to reduce the false alarm rate, high reliability, detect gas intrusion The effect of time advance

Active Publication Date: 2017-05-31
CHINA UNIV OF PETROLEUM (EAST CHINA)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The sound wave propagation path of this technical solution is long, the received signal energy attenuation is significant, and there is more noise interference, especially in the early stage of gas invasion with low gas content, the abnormal response characteristics of sound waves are often covered by noise, and the sensitivity and reliability of monitoring Poor sex
Theoretically, the change of sound wave propagation characteristics is very beneficial to the early monitoring of gas intrusion, but it is still not perfect at present. The difficulty lies in minimizing the attenuation effect and identifying characteristic signals

Method used

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  • Shaft gas cut early-stage active monitoring method based on low-frequency elastic wave response characteristic
  • Shaft gas cut early-stage active monitoring method based on low-frequency elastic wave response characteristic
  • Shaft gas cut early-stage active monitoring method based on low-frequency elastic wave response characteristic

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Embodiment

[0036] Such as Figure 1~3 As shown, the early active monitoring system for wellbore gas invasion based on low-frequency elastic wave response features includes a downhole wireless signal transmitter 3 for wireless communication and a ground control center 4, and a downhole monitoring sub-section 2 connected to the downhole wireless signal transmitter 3, The downhole monitoring nipple 2 is located between the drill pipe 1 and the drill bit, including:

[0037]The elastic wave pulse launching plate 21 includes an annular elastic wave launching plate base 211, and the elastic wave launching plate base 211 is provided with four centering stabilizing fins evenly distributed along the circumferential direction of the ring (which can effectively prevent the downhole monitoring sub-joint 2 from being stuck in the well bore. eccentric to ensure the accuracy of the monitoring results), a low-frequency piezoelectric induction piece I212 is arranged in the center of each centering wing, ...

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Abstract

The invention discloses a shaft gas cut early-stage active monitoring method based on a low-frequency elastic wave response characteristic. By adopting the method, the gas containing rate of an annulus nearby the upper portion of a drill bit can be monitored the drilling process in real time, gas cut can be found as early as possible, timely warning can be given, monitoring is sensitive and reliable, precious time can be won for ground design and well control operation implementation, and the safety of an oil gas drilling project can be guaranteed. In the drilling process, a drilling fluid flows through an underground monitoring short section through the annulus, the underground monitoring short section transmits pulse signals according to fixed frequency and converts received response signals into electric signals, two attribute values including first arrival time and a peak value of each of head waves of the electric signals are extracted for encoding, whether gas cut occurs or not is judged, if it is determined that the gas cut occurs, gas cut information is sent to a ground control center through an underground wireless signal transmitter.

Description

technical field [0001] The invention relates to a monitoring method, in particular to an early active monitoring method for wellbore gas invasion based on low-frequency elastic wave response characteristics. It belongs to the technical field of analysis and measurement control. Background technique [0002] In order to meet the needs of the national energy strategy, oil and gas drilling technology continues to develop. Currently, oil and gas drilling is developing towards deeper formations and deep ocean waters. Gas kick refers to the entry of formation gas into the wellbore annulus due to pressure difference or substitution, which is a common drilling complication. If gas intrusion is not handled properly, it will further develop into wellhead overflow, or even blowout accident, resulting in major production safety accidents. At present, gas intrusion monitoring is mainly carried out on the ground or near the wellhead, such as the monitoring of fluid volume changes in dri...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B47/10
CPCE21B47/10
Inventor 王子振王瑞和武加锋薛启龙李天阳
Owner CHINA UNIV OF PETROLEUM (EAST CHINA)
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