Rock strength identification while drilling based on percussive rotary drilling
Идентификация прочности породы при бурении на основе перкуссионного роторного бурения
2024-03-01
SCID: 54.1/a37z7xm2
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digital drilling process monitoringpercussive rotary drillingpneumatic percussion rotary drilling rigrate of penetrationrock strength identification
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Abstract (AI)
During tunnel excavation, the digital drilling process monitoring (DPM) system can quickly obtain rock strength parameters in real time, and guide on-site excavation and support operations in a timely manner. In order to obtain the surrounding rock strength in front of the tunnel face in real time, this study carried out the in situ digital drilling tests based on the digital drilling process monitoring (DPM) system mounted on the pneumatic percussion rotary drilling rig. Through the real-time monitoring, recording and analysis of the drilling parameters such as thrust pressure, rotation pressure, percussion pressure and drill rod displacement in the whole drilling process, the characteristics of the drilling parameters in different drilling processes are obtained. On this basis, each drilling process is identified, and the drilling parameters of the pure drilling process are separated by using the DPM time series analysis method. The results show that the drilling depth of the pure drilling process changes linearly with the drilling time. The variation of working pressure of the drilling rig with the drilling time is relatively constant, and it has limited influence on the rate of penetration in different rate-of-penetration sections. Meanwhile, the rate of penetration decreases with the increase in rock strength, and an exponential relationship model between rock strength and rate of penetration is established to guide engineering practice.
Key Findings
1
A DPM system mounted on a pneumatic percussion rotary drilling rig can obtain surrounding rock strength in front of a tunnel face in real time.
2
Drilling depth during the pure drilling process changes linearly with drilling time.
3
Rate of penetration decreases as rock strength increases, and an exponential relationship model between rock strength and rate of penetration is established.
4
Real-time monitoring of thrust pressure, rotation pressure, percussion pressure, and drill rod displacement enables identification of different drilling process stages.
5
Using DPM time series analysis, the pure drilling process can be separated from other drilling phases for focused parameter analysis.
6
Working pressure variation with drilling time is relatively constant and has limited influence on rate of penetration across different sections.
Research Object
Pneumatic percussive rotary drilling rig with digital drilling process monitoring system used in in situ tunnel face drilling
Research Subject
Identification/estimation of surrounding rock strength ahead of the tunnel face from drilling parameters (thrust, rotation, percussion pressures, drill rod displacement, rate of penetration) and establishment of an exponential relationship between rock strength and rate of penetration
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2024-03-01
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