• 제목/요약/키워드: Drilling

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선진시추장비와 시추공벽 영상화 장비를 이용한 TBM 전방 지반평가시스템 개발 (Development for prediction system of TBM tunnel face ahead using probe drilling equipment and drilled hole imaging equipment)

  • 김기석;김종훈;정래철;이인모;조계춘
    • 한국터널지하공간학회 논문집
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    • 제17권3호
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    • pp.393-401
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    • 2015
  • TBM 터널을 건설하는 동안 효율적이고 안전한 작업을 위하여 굴착 암반의 정확한 정보를 획득하는 것은 매우 중요하다. 이 연구에서는 터널 막장 전방의 암반 상태를 예측하기 위하여 선진시추장비와 시추공벽 영상화 장비를 이용한 TBM 전방 지반평가시스템을 개발하였다. TBM 전방 지반평가시스템은 선진시추장비와 시추공벽 영상화 장비, 분석 소프트웨어로 구성된다. 선진시추장비는 논코어링과 코어링 방법이 모두 적용 가능하도록 개발되었다. 또한 굴진 시 획득되는 피드압, 회전압, 회전수, 굴진속도 등의 천공영향 변수를 획득할 수 있다. 천공지수는 코어RMR과의 상관성분석을 통해 천공지수RMR로 환산된다. 개발된 시스템은 비탈면, 터널 현장에서 현장적용을 진행하였다. 현장 적용 결과 논코어링 방법은 코어링 방법에 비해 4배가량 빠른 굴진이 가능한 것으로 확인되었고, 천공지수RMR과 코어RMR은 유사한 분포를 나타내었다. TBM 전방 지반평가시스템은 신속한 지반예측이 가능하므로 공기지연을 최소화할 수 있는 막장 전방 예측 기술로의 활용이 기대된다.

발파공의 천공오차와 발파정확도의 상관성에 관한 현장조사 및 계층분석기법 연구 (Analytic Hierarchy Process Analysis on Correlation Between Drilling Error and Blasting Accuracy)

  • 이덕환;최성웅;김창오
    • 터널과지하공간
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    • 제24권5호
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    • pp.386-394
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    • 2014
  • 발파를 이용한 채광작업에 있어서 천공의 정확성은 발파의 효율성을 결정할 수 있는 중요한 요소 중의 하나이며, 따라서 천공오차의 발생 원인에 대한 분석과 천공오차의 발생 정도를 줄일 수 있는 대책 마련은 발파의 효율성 및 안전성 확보에서 매우 중요하다. 본 연구에서는 천공오차의 발생 원인을 제어가능 요인과 제어불가능 요인으로 나누어 분석하였으며 현장조사와 AHP 분석을 통하여 천공오차를 유발하는 요인들의 영향성을 살펴보았다. 또한 이들 간의 가중치 분석을 통해 천공오차를 낮출 수 있는 효과적인 대책을 제시하였다.

Borehole stability analysis in oil and gas drilling in undrained condition

  • Wei, Jian-Guang;Yan, Chuan-Liang
    • Geomechanics and Engineering
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    • 제7권5호
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    • pp.553-567
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    • 2014
  • Borehole instability during drilling process occurs frequently when drilling through shale formation. When a borehole is drilled in shale formation, the low permeability leads to an undrained loading condition. The pore pressure in the compressed area near the borehole may be higher than the initial pore pressure. However, the excess pore pressure caused by stress concentration was not considered in traditional borehole stability models. In this study, the calculation model of excess pore pressure induced by drilling was obtained with the introduction of Henkel's excess pore pressure theory. Combined with Mohr-Coulumb strength criterion, the calculation model of collapse pressure of shale in undrained condition is obtained. Furthermore, the variation of excess pore pressure and effective stress on the borehole wall is analyzed, and the influence of Skempton's pore pressure parameter on collapse pressure is also analyzed. The excess pore pressure decreases with the increasing of drilling fluid density; the excess pore pressure and collapse pressure both increase with the increasing of Skempton's pore pressure parameter. The study results provide a reference for determining drilling fluid density when drilling in shale formation.

The ROP mechanism study in hard formation drilling using local impact method

  • Liu, Weiji;Zhu, Xiaohua;Zhou, Yunlai;Mei, Liu;Meng, Xiannan;Jiang, Cheng
    • Structural Engineering and Mechanics
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    • 제68권1호
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    • pp.95-101
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    • 2018
  • The low rate of penetration and short lifetime of drilling bit served as the most common problems encountered in hard formation drilling, thus leading to severe restriction of drilling efficiency in oil and gas reservoir. This study developed a new local impact drilling method to enhance hard formation drilling efficiency. The limitation length formulas of radial/lateral cracks under static indentation and dynamic impact are derived based on the experimental research of Marshall D.B considering the mud column pressure and confining pressure. The local impact rock breaking simulation model is conducted to investigate its ROP raising effect. The results demonstrate that the length of radial/lateral cracks will increase as the decrease of mud pressure and confining pressure, and the local impact can result in a damage zone round the impact crater which helps the rock cutting, thus leading to the ROP increase. The numerical results also demonstrate the advantages of local impact method for raising ROP and the vibration reduction of bit in hard formation drilling. This study has shown that the local impact method can help raising the ROP and vibration reduction of bit, and it may be applied in drilling engineering.

Resource recovery and harmless treatment of waste oil-in-water drilling fluid

  • Tang, Chao;Xie, Shui Xiang
    • Environmental Engineering Research
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    • 제22권3호
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    • pp.277-280
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    • 2017
  • Destablization and demulsification is a difficult task for the treatment of waste oil-in-water drilling fluid because of its "three-high" characteristics: emulsification, stabilization and oiliness. At present, China is short for effective treating technology, which restricts cleaner production in oilfield. This paper focused on technical difficulties of waste oil-in-water drilling fluid treatment in JiDong oilfield of China, adopting physical-chemical collaboration demulsification technology to deal with waste oil-in-water drilling fluid. After oil-water-solid three-phase separation, the oil recovery rate is up to 90% and the recycled oil can be reused for preparation of new drilling fluid. Meanwhile, harmless treatment of wastewater and sludge from waste oil-in-water drilling fluid after oil recycling was studied. The results showed that wastewater after treated was clean, contents of chemical oxygen demand and oil decreased from 993 mg/L and 21,800 mg/L to 89 mg/L and 3.6 mg/L respectively, which can meet the requirements of grade one of "The National Integrated Wastewater Discharge Standard" (GB8978); The pollutants in the sludge after harmless treatment are decreased below the national standard, which achieved the goal of resource recovery and harmless treatment on waste oil-in-water drilling fluid.

Deep Hole Drilling에서 절삭유가 가공성에 미치는 영향에 관한 연구 (A Study on Influence of the Cutting Fluid to Machinability in Deep Hole Drilling)

  • 장성규;이충일;전언찬
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.1068-1072
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    • 1997
  • This work deals with on investigation the influence of various additives to a base stock cutting fluid in order to develop a better deep hold drilling. This investigation has been aiming at developing an oil which gives a maximum cutting efficiency at a minimum wear rate of the tool and the guiding pads. The purpose of study is to analyze how guide pad of tools, workpiece and the change of contained quantity of extreme pressure additive in cutting fluids have effects on the hold over size of cutting hole, surface roughness of workpiece,wear rates of guide pad and roundness during the deep hole machining of SM55C with solid BTA drill by using BTA drilling system through experiment. Conclusion reached is as follows. It has been proved that the contained quantity of surphur more affects machinability than that of extreme pressure additive of chlorine of cutting fluid in BTA drilling during Deep Hole Drilling. Considering its base oil, the the contained quantity of extreme pressure assitive of surphur can be different, but it's judged that the range of 1.5 ~ 2.0% is suitable to machinability for workpiece in BTA drilling. Regarding guide pad, it's judged that the reduction of wear is possible in propotion to the contained quantity of exrreme pressure additive of chlorine against supporting of cutting force and Bumishing operation of machining parts in cutting.

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Force Prediction and Stress Analysis of a Twist Drill from Tool Geometry and Cutting Conditions

  • Kim, Kug-Weon;Ahn, Tae-Kil
    • International Journal of Precision Engineering and Manufacturing
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    • 제6권1호
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    • pp.65-72
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    • 2005
  • Drilling process is one of the most common, yet complex operations among manufacturing processes. The performance of a drill is largely dependent upon drilling forces, Many researches focused on the effects of drill parameters on drilling forces. In this paper, an effective theoretical model to predict thrust and torque in drilling is presented. Also, with the predicted forces, the stress analysis of the drill tool is performed by the finite element method. The model uses the oblique cutting model for the cutting lips and the orthogonal cutting model for the chisel edge. Thrust and torque are calculated analytically without resorting to any drilling experiment, only by tool geometry, cutting conditions and material properties. The stress analysis is performed by the commercial FEM program ANSYS. The geometric modeling and the mesh generation of a twist drill are performed automatically. From the study, the effects of the variation of the geometric features of the drill and of the cutting conditions of the drilling on the drilling forces and the stress distributions in the tool are calculated analytically, which can be applicable for designing optimal drill geometry and for improving the drilling process.

The effect of low-speed drilling without irrigation on heat generation: an experimental study

  • Oh, Ji-Hyeon;Fang, Yiqin;Jeong, Seung-Mi;Choi, Byung-Ho
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제42권1호
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    • pp.9-12
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    • 2016
  • Objectives: In this study we evaluated heat generation during the low-speed drilling procedure without irrigation. Materials and Methods: Ten artificial bone blocks that were similar to human D1 bone were used in this study. The baseline temperature was $37.0^{\circ}C$. We drilled into 5 artificial bone blocks 60 times at the speed of 50 rpm without irrigation. As a control group, we drilled into an additional 5 artificial bone blocks 60 times at the speed of 1,500 rpm with irrigation. The temperature changes during diameter 2 mm drilling were measured using thermocouples. Results: The mean maximum temperatures during drilling were $40.9^{\circ}C$ in the test group and $39.7^{\circ}C$ in the control group. Even though a statistically significant difference existed between the two groups, the low-speed drilling did not produce overheating. Conclusion: These findings suggest that low-speed drilling without irrigation may not lead to overheating during drilling.

달 지상탐사 지원에 필요한 시추 및 시추정보 기반 강도 평가 (Drilling for Lunar Surface Exploration and Shear Strength Evaluation Based on Drilling Information)

  • 유병현
    • 한국지반환경공학회 논문집
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    • 제23권10호
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    • pp.21-31
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    • 2022
  • 최근 세계우주국에서는 달에 얼음이 매장되어 있음을 발견하고 경쟁적으로 달 얼음 탐사 미션을 추진 중에 있다. 달에서 얼음을 탐사하고 지하 샘플을 채취하여 지층의 구성을 측정하기 위한 연구는 필수적이다. 착륙선 및 탐사로버는 달의 극지방에 위치한 얼음과 자원을 분석하기 위하여 시추 장비가 필요하다. 이러한 장치는 달 환경의 극한 조건에서 작동할 수 있는 신뢰성을 가져야 하며 소형, 경량, 저전력, 고효율의 장치여야 한다. 국내에서도 달 지하 1m 까지 매장되어 있는 얼음 샘플채취 및 지층구조 분석이 가능한 무인 시추장비 개발을 진행하고 있다. 본 논문은 지금까지 개발된 시추장비와 시추정보를 이용한 지반강도를 평가하는 기법에 대해 소개하고자 한다.

해양 시추시스템 구성요소에 대한 이해 및 동향분석 (Understanding of Offshore Drilling System and Trend Analysis)

  • 우남섭;권재기;박종명;김상식;김영주
    • 대한기계학회논문집 C: 기술과 교육
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    • 제1권1호
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    • pp.33-38
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    • 2013
  • 해상에서의 시추작업은 해저면을 통해서 시추되는 유정에서 이루어지는 일련의 기계적 프로세스라 할 수 있다. 해양 시추설비는 해저에 매장된 석유나 가스의 매장량 확인을 위한 테스트 유정(well)과 이를 경제성 있는 생산용 유정으로 만들기 위해 사용되는 시설로 해양에서의 시추작업은 대부분 타 지역으로의 이동을 위해 이동식으로 제작되며, 작업 해역의 수심에 따라 크게 리그(jack-up, semi-submersible)와 드릴십(drillship)으로 구분할 수 있다. 최근에는 석유와 가스의 개발을 위한 시추작업이 급진적으로 심해로 옮겨가고 있으며 작업 가능 수심이 3,000 m에 이르고 있다. 본 논문에서는 이러한 해상 시추설비에 탑재되는 대표적 해양플랜트 기자재인 시추시스템을 소개하고 최근의 기술개발 동향을 알아보고자 한다.