钻孔数据处理与三维显示软件设计及应用
Design and application of software for borehole data processing and three-dimensional display
-
摘要: 针对煤矿井下回转钻进用随钻轨迹仪及手持式轨迹仪测量软件功能单一、显示不直观、无法指导钻孔施工等问题,采用C#语言开发了钻孔数据处理软件;软件具有数据预处理、钻孔深度及钻孔轨迹计算、钻孔轨迹三维建模与显示及钻孔轨迹设计指导等4个功能模块,可实现钻孔数据的导入与处理、钻孔深度及钻孔轨迹可视化显示、定量计算钻孔覆盖盲区及指导后续钻孔施工;利用该钻孔数据处理软件可快速定位钻孔群轨迹及终孔落点,准确判定钻进盲区及钻孔与煤层的位置关系。现场试验表明:钻孔数据处理与三维显示软件使用可靠稳定,数据处理简单有效,钻孔群轨迹及煤层分布的三维显示直观明了,可为后续钻进施工提供及时、有效的技术支撑。Abstract: In view of the problems of single function, non intuitive display and unable to guide drilling construction of trajectory while drilling and hand-held trajectory measurement software for rotary drilling in coal mine, the drilling data processing software is developed with C# language. The software has four functional modules: data preprocessing, drilling depth and drilling trajectory calculation, 3D modeling and display of drilling trajectory and subsequent guide for drilling trajectory design. It can realize the import and processing of drilling data, visual display of drilling depth and drilling trajectory, quantitative calculation of blind area covered by drilling and guidance of subsequent drilling construction. By using the software, the trajectory of drilling group and the final point can be quickly located, and the blind area and the relationship between drilling and coal seam can be accurately determined. The field test shows that the drilling data processing and 3D display software are reliable and stable, the data processing is simple and effective, and the 3D display of drilling group trajectory and coal seam distribution is intuitive and clear, which can provide timely and effective technical support for subsequent drilling construction.
-
Keywords:
- data processing /
- borehole trajectory /
- drilling depth /
- 3D display /
- rotary drilling
-
-
[1] 杨林.煤矿井下瓦斯抽采钻孔机器人研究现状及关键技术[J].煤矿机械,2018,39(8):60-62. YANG Lin. Research status and key technology of underground gas drainage drilling robot in coal mine[J]. Coal Mine Machinery, 2018, 39(8): 60-62.
[2] 石智军,刘建林,李泉新.我国煤矿区钻进技术装备发展与应用[J].煤炭科学技术,2018,46(4):1-6. SHI Zhijun, LIU Jianlin, LI Quanxin. Development and application of drilling technique and equipment in coal mining area of china[J]. Coal Science and Technology, 2018, 46(4): 1-6.
[3] 方俊,石智军,李泉新,等.新型煤矿井下定向钻进用有线随钻测量装置[J].工矿自动化,2015,41(8):1. FANG Jun, SHI Zhijun, LI Quanxin, et al. Novel cable measurement while drilling device used for directional drilling incoal mine[J]. Industry and Mine Automation, 2015, 41(8): 1.
[4] 梁春苗,姚宁平,姚亚峰,等.狭窄巷道用定向钻机研制及应用[J].煤矿安全,2019,50(6):104-110. LIANG Chunmiao, YAO Ningping, YAO Yafeng, et al. Development of directional drilling rig for narrow coal mine roadway and application[J]. Safety in Coal Mines, 2019, 50(6): 104-110.
[5] 冯强.回转钻进钻孔测量系统及其在寺河矿的应用[J].煤炭技术,2013,32(6):66-68. FENG Qiang. Application of measuring system of rotary-drilled borehole in Sihe Mine[J]. Coal Technology, 2013, 32(6): 66-68.
[6] 黄麟森,张先韬.回转钻进随钻测量装置数据处理软件设计[J].工况自动化,2015,41(7):112-114. HUANG Linsen, ZHANG Xiantao. Design of data processing software of measurement device while drilling for rotary drilling[J]. Safety in Coal Mine, 2016, 47(3): 104-106.
[7] 王岚.存储式随钻测斜仪的研制[J].煤田地质与勘探,2013,41(3):79-80. WANG Lan. Research and development of storage inclinometer while drilling[J]. Coal Geology & Exploration, 2013, 41(3): 79-80.
[8] 宫浩.矿用低功耗随钻轨迹测量仪[J].煤矿安全,2019, 50(5):105-108. GONG Hao. Low power consumption trajectory measuring instrument while drilling in mine[J]. Safety in Coal Mines, 2019, 50(5): 105-108.
[9] 刘喜龙,张军,赵明校,等.钻孔轨迹测量技术及应用研究[J].西部探矿工程,2016,28(11):17-20. [10] 胡玉超.Voxler在钻孔轨迹可视化中的应用[J].煤矿安全,2018,49(4):99-102. HU Yuchao. Application of Voxler in visualization of borehole trajectory[J]. Safety in Coal Mine, 2018, 49(4): 99-102.
[11] 徐佳,朱鲁,翟培合.基于Voxler平台的电法数据体三维可视化[J].工程地球物理学报,2014,11(6):772-775. XU Jia, ZHU Lu, ZHAI Peihe. The 3D visualization interpretation of electrical data based on the Voxler platform[J]. Chinese Journal of Engineering Geophysics, 2014, 11(6): 772-775.
计量
- 文章访问数: 41
- HTML全文浏览量: 0
- PDF下载量: 13