4/6/2025, 11:18:30 AM 星期日
Research progress and development discussion on sonic drilling rigs for soil environmental investigation at home and abroad
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1.Nanjing Sino-Dutch Universal Environ. Sci. & Tech. Co., Ltd., Nanjing Jiangsu 210019, China;2.Liyang Dongnan Machinery Co., Ltd., Liyang Jiangsu 213399, China

Clc Number:

P634.3+1;X53

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    Abstract:

    The research progress on sonic drilling technology in theory and application is discussed. Firstly, the development history of sonic drilling technology is described. Secondly, the typical sonic drilling rigs at home and abroad are investigated and compared with analysis of the shortcomings of domestic sonic drilling rigs. Thirdly, analysis of the application of sonic drilling rigs in soil environmental investigation show that they can meet the requirement for continuous, complete and in-situ weak disturbance sampling of different soil layers. Finally, the research and development direction of sonic drilling rigs are discussed, including development of the high-frequency sonic power head with the dual vibrator structure and the composite rubber damping material to stabilize the high frequency of 150 Hz and prolong the life of the power head, development of anti-fatigue and anti-impact chromium-molybdenum alloy materials to solve the fatigue damage of drilling tools at high vibration frequencies, development of the malfunction diagnosis and auto-repair, remote operation and control, and volatile organic compound online monitoring systems to improve the intelligence and automation level of high-frequency sonic drilling rigs.

    Reference
    [1] 李卓.土壤环境监测信息系统构建研究[D].青岛:山东科技大学,2011.LI Zhuo. Research on the built of soil environmental monitoring information system[D]. Qingdao: Shandong University of Science and Technology, 2011.
    [2] 环境保护部,国土资源部.全国土壤污染状况调查公报[EB/OL]. 2014. http://www.gov.cn/foot/site1/20140417.Ministry of Environmental Protection, Ministry of Land and Resources. National Survey Communique on Soil Pollution Status [EB/OL]. 2014. https://www.gov.cn/foot/site1/20140417.
    [3] 程功弼,田英,许孟一,等.一种用于土壤地下水取样修复的新型设备的研究[J].环境工程,2017(S1):200-205.CHENG Gongbi, TIAN Ying, XU Mengyi, et al. Study on a new device for sampling and remediation of soil and groundwater[J]. Environmental Engineering, 2017(S1):200-205.
    [4] 余慧萍,张亚楠.工厂搬迁仍留“毒”,污染场地修复红火[N].南方都市报,2011-01-17(3).YU Huiping, ZHANG Yanan. “Poison” is remaining in factory while remediation of contaminated sites is booming[N]. Southern Metropolis Daily, 2011-01-17(3).
    [5] 中华人民共和国国务院.土壤污染防治行动计划[Z].北京, 2016.National Assembly of the PRC. Soil Pollution Prevention and Control Action Plan[Z]. Beijing, 2016.
    [6] ASTMD 6286—1998.环境位点特性分析用钻削方法选择的标准指南[S].美国材料与试验协会,1998.ASTMD 6286—1998. Standard guide for selection of drilling methods for environmental site characterization[S]. American Society for Testing and Materials, 1998.
    [7] 叶成明,李小杰,刘迎娟.浅析声波钻进技术[J].勘察科学技术,2007,(5):29-31.YE Chengming, LI Xiaojie, LIU Yingjuan. Preliminary analysis of sonic drilling technology[J]. Site Investigation Science and Technology, 2007(5):29-31.
    [8] 雷开先.声波钻机在环境地质调查中的应用研究[J].探矿工程(岩土钻掘工程),2013,40(6):4-8.LEI Kaixian. Application study of sonic drill in environmental geological survey[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2013,40(6):4-8.
    [9] 陆卫星,任晓飞,吴浩,等.国内振动钻机的发展及应用[J].中国煤炭地质,2012,24(7):73-76.LU Weixin, REN Xiaofei, WU Hao, et al. Application and advance on vibration drilling rigs in China[J]. Coal Geology of China, 2012,24(7):73-76.
    [10] 宋家音,赵玲,滕应,等.污染场地采样调查技术与设备研究进展[J].土壤,2021,53(3):468-474.SONG Jiayin, ZHAO Ling, TENG Ying, et al. Research progress on sampling survey technology and equipment for contaminated sites[J]. Soils, 2021,53(3):468-474.
    [11] George Constantinesco. A treatise on Transmission of Power by Vibrations[M]. London: The Admiralty, 1918.
    [12] 李炯,王瑜,周琴,等.环境取样钻机的关键技术及发展趋势研究[J].探矿工程(岩土钻掘工程),2019,46(9):81-87.LI Jiong, WANG Yu, ZHOU Qin, et al. Research on key technology and development trend of environmental sampling rig[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2019,46(9):81-87.
    [13] 赵伟.高频振动回转钻进机理分析与研究[D].长春:吉林大学,2008.ZHAO Wei. The analysis and research on the mechanism of high-frequency vibration and rotary drilling technology[D]. Changchun: Jilin University, 2008.
    [14] Barrow Jeffrey C.. The resonant sonic drilling method: An innovative technology for environmental restoration programs[J]. Ground Water Monitoring & Remediation, 1994,14(2):153-160.
    [15] Roussy R. The development of sonic drilling technology[J]. Geo Drilling International, 2002, 10(10): 12-14.
    [16] 张燕.国外声波钻机及其应用[J].探矿工程(岩土钻掘工程),2008,35(7):105-107.ZHANG Yan. Foreign sonic drilling rigs and their applications[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2008,35(7):105-107.
    [17] 吴光琳.声波钻进技术的发展及其应用[J].探矿工程(岩土钻掘工程),2004,31(3):39-41.WU Guanglin. Development and application of sonic drilling technology[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2004,31(3):39-41.
    [18] 吴光琳.欧美环境保护钻探和钻孔工程[J].国外地质勘探技术,1998(1):35-40.WU Guanglin. European and American environmental protection drilling and engineering[J]. Foreign Geological Exploration Technology, 1998(1):35-40.
    [19] 潘云雨,梅金星,徐静,等.ZHDN-SDR 150A型高频声波钻机设计[J].钻探工程,2022,49(2):135-144.PAN Yunyu, MEI Jinxing, XU Jing, et al. Design of ZHDN-SDR 150A high-frequency sonic drill[J]. Drilling Engineering, 2022,49(2):135-144.
    [20] 陆卫星,吴浩,任晓飞.MGD-S50Ⅱ型声频振动钻机应用试验及优化研究[J].地质装备,2021,22(6):14-18.LU Weixing, WU Hao, REN Xiaofei. Application test and optimization of MGD-S50Ⅱ acoustic vibration drill[J]. Geology Equipment, 2021,22(6):14-18.
    [21] 冉灵杰.浅层土壤环境取样钻进技术研究[D].北京:中国地质大学(北京),2019.RAN Lingjie. Research on drilling technology of soil environment sampling in shallow layer[D]. Beijing: China University of Geosciences (Beijing), 2019.
    [22] 颜纯文.声波钻进和宝长年LS250声波钻机[J].地质装备,2016,17(5):11-15.YAN Chunwen. Sonic drilling and Boart Longyear LS250 sonic drilling rig[J]. Geology Equipment, 2016,17(5):11-15.
    [23] 吴浩,陆卫星,任晓飞,等.YSZ-50型声频振动钻机的研制[J].探矿工程(岩土钻掘工程),2012,39(1):9-13.WU Hao, LU Weixing, REN Xiaofei, et al. Development of YSZ-50 sonic drilling rig[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2012,39(1):9-13.
    [24] 任晓飞,赵振国,牛军辉,等.YSZ-50型声频振动钻机在尾矿坝勘察中的应用[J].地质装备,2013(1):27-28.REN Xiaofei, ZHAO Zhenguo, NIU Junhui, et al. Application of YSZ-50 acoustic frequency vibration drill in investigation of tailings dam[J]. Geology Equipment, 2013(1):27-28.
    [25] 吴浩,赵晓冬.YSZ-50型声频振动钻机的工程应用及技术改进[J].地质装备,2016,17(1):20-22,30.WU Hao, ZHAO Xiaodong. Engineering application and technical improvement of YSZ-50 acoustic vibration drill[J]. Geology Equipment, 2016,17(1):20-22,30.
    [26] 李伟,吴浩,杨恺.MGD-S50Ⅱ型声频振动钻机的研制与试验[J].中国煤炭地质,2017,29(12):75-77,95.LI Wei, WU Hao, YANG Kai. Development and site testing of MGD-S50II type sonic frequency resonance drill[J]. Coal Geology of China, 2017,29(12):75-77,95.
    [27] 吴浩,康凯.国内外环保调查钻机新进展[J].环境工程,2019,37(S1):854-856,864.WU Hao, KANG Kai. New development of drill rigs for environmental protection investigation at home and abroad[J]. Environmental Engineering, 2019,37(S1):854-856,864.
    [28] 无锡金帆钻凿设备股份有限公司.YGL-S100和YGL-S50型声波钻机[J].地质装备,2016,17(5):45.Wuxi Jinfan Drilling Equipment Company Limited. YGL-100 and YGL-S50 sonic drilling rigs[J]. Geology Equipment, 2016,17(5):45.
    [29] 陈博文.声频钻机空气隔振性能研究[D].北京:中国地质大学(北京),2020.CHEN Bowen. Research on air vibration isolation performance of sonic drill[D]. Beijing: China University of Geosciences (Beijing), 2020.
    [30] 薛倩冰,张金昌.智能化自动化钻探技术与装备发展概述[J]. 探矿工程(岩土钻掘工程),2020,47(4):9-14.XUE Qianbing, ZHANG Jinchang. Advances in intelligent automatic drilling technologies and equipment[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47(4): 9-14.
    [31] 刘凡柏,高鹏举,任启伟,等.4000 m交流变频电驱动岩心钻机的研制及其在地热井的工程应用[J].探矿工程(岩土钻掘工程),2018,45(10):40-46.LIU Fanbai, GAO Pengju, REN Qiwei. et al. Development and application of 4000m AC frequency conversion core drill[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2018,45(10):40-46.
    [32] 黄洪波,朱江龙,刘跃进.我国钻探技术装备“十一五”回顾与“十二五”展望[J].探矿工程(岩土钻掘工程),2011,38(1):8-14.HUANG Hongbo, ZHU Jianglong, LIU Yuejin. Review of drilling technology and equipment for the 11th Five-year Plan period and envisioning of same for the 12th Five-year Plan period in China[J]. Exploration Engineering (Rock &Soil Drilling and Tunneling), 2011,38(1):8-14.
    [33] 王颖.我国污染场地调查概述[J].建筑工程技术与设计,2016(15):7714.WANG Ying. An overview of the investigation of contaminated sites in China[J]. Construction Engineering Technology and Design, 2016(15):7714.
    [34] 鞠凤萍,郭密文,李旭,等.污染场地调查评估现状及市场分析[J].绿色科技,2016(16):68-70.JU Fengping, GUO Miwen, LI Xu, et al. Current status of investigation and evaluation of contaminated sites and market analysis[J]. Journal of Green Science and Technology, 2016(16):68-70.
    [35] 吴浩,周兢.50米超高频声波环保钻机研制及其在污染场地调查的应用研究[J].环境工程,2019,37(S1):903-906.WU Hao, ZHOU Jing. The Research of 50m super frequent sonic environmental rig and the application of investigation in polluted site[J]. Environmental Engineering, 2019(S1):903-906.
    [36] 吴浩,赵晓冬,李伟.新型声频振动环保钻机的研制与工程应用[J].机床与液压,2019,47(4):62-66.WU Hao, ZHAO Xiaodong, LI Wei. Development and application of the new type sonic environmental drilling rig[J]. Machine Tool & Hydraulics, 2019,47(4):62-66.
    [37] Kasassi A., Rakimbei P., Karagiannidis A., et al. Soil contamination by heavy metals: measurements from a closed unlined landfill[J]. Bioresource Technology, 2008,99(18):8578-8584.
    [38] 李玲,王颋军,唐跃刚.封场非正规垃圾填埋场的场地调查浅析[J].环境卫生工程,2014,22(2):59-61.LI Ling, WANG Tingjun, TANG Yuegang. Site investigation of closed informal landfill sites[J]. Environmental Sanitation Engineering, 2014,22(2):59-61.
    [39] 中华人民共和国生态环境部.工矿用地土壤环境管理办法(试行)[Z].北京,2018.Ministry of Ecology and Environment of the People’s Republic of China. Soil environmental management measures for industrial and mining land (for trial implementation)[Z]. Beijing, 2018.
    [40] 罗强,刘良平,谢士求,等.YGL-S100型声波钻机及其在深厚覆盖层成孔取样施工实践[J].探矿工程(岩土钻掘工程),2013,40(6):9-13.LUO Qiang, LIU Liangping, XIE Shiqiu, et al. Introduction of YGL-S100 sonic drill and the sampling practice in deep overburden layer[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2013,40(6):9-13.
    [41] 谈耀麟.钻孔下套管方法综述[J].地质与勘探,1991,27(6):52-57.TAN Yaolinlin. A review on drill hole casing methods[J]. Geology and Exploration, 1991,27(6):52-57.
    [42] 颜俊,卢薇艳.采用地质工程手段处治垃圾填埋场渗滤液方法研究[J].探矿工程(岩土钻掘工程),2016,43(10):108-111.YAN Jun, LU Weiyan. Study on refuse landfill leachate treatment by means of engineering methods[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2016,43(10):108-111.
    [43] 张健松,刘永升,李之军,等.地质钻探复杂地层固壁堵漏新工艺[J].地质与勘探,2020,56(4):819-825.ZHANG Jiansong, LIU Yongseng, LI Zhijun, et al. New technology of geological drilling for borehole-wall reinforcement and leaking stoppage in complex formation[J]. Geology and Exploration, 2020,56(4):819-825.
    [44] 马志鹏,王瑜,吴浩.基于Workbench的声频钻机动力头隔振特性分析[J].钻探工程,2022,49(3):60-69.MA Zhipeng, WANG Yu, WU Hao, et al. Analysis of vibration isolation characteristics of the sonic drill power head based on Workbench[J]. Drilling Engineering, 2022,49(3):60-69.
    [45] 南京中荷寰宇环境科技有限公司.一种钻机用高频偏心振动声波动力头:202010391877.3[P]. 2020-05-11.Nanjing Sino-Dutch Universal Environ. Sci. & Tech. Co., Ltd. A high-frequency eccentric and sonic vibration power head for a drilling rig: 202010391877.3[P]. 2020-05-11.
    [46] 潘云雨,高翔,潘俊,等.一种钻机声波动力头偏心振动轴承冷却保护系统:202020764830.2[P].2020-05-11.PAN Yunyu, GAO Xiang, PAN Jun, et al. A kind of bearing cooling protection system for eccentric and sonic vibration power head of a drilling rig: 202020764830.2[P]. 2020-05-11.
    [47] 溧阳东南机械有限公司.一种钻机声波动力头偏心振动发生装置:20201039188.7[P].2020-05-11.Liyang Dongnan Machinery Co., Ltd. A kind of vibration generating device for eccentric and sonic vibration power head of a drilling rig: 20201039188.7[P]. 2020-05-11.
    [48] 中华人民共和国环境保护部.中华人民共和国土壤污染防治法[Z].北京,2018.Ministry of Environmental Protection of the People’s Republic of China. Soil Pollution Prevention and Control Law of the People’s Republic of China[Z]. Beijing, 2018.
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History
  • Received:January 19,2022
  • Revised:June 21,2022
  • Adopted:August 11,2022
  • Online: December 05,2022
  • Published: November 10,2022
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