期刊文献+

矿山工程项目中岩土勘查技术及应用实践研究 被引量:1

Study on geotechnical investigation technology and application in mine engineering projects
下载PDF
导出
摘要 自改革开放以来,我国的综合国力得到了显著的提高,并且在经济和科技的推动下,我国各行各业的发展都有了明显的上升,其中矿山建设行业作为我国新型的支柱产业,规模和数量都在不断地扩大和增加。矿山工程建设的水平和质量是一个国家综合国力的体现,为了使矿山工程项目更加的科学、可行、持久,岩土勘探技术是必不可少的。如果岩土勘探的数据和信息出现不准确、不真实等失误,就会严重影响矿山建筑的可靠性和安全性。本篇文章主要对矿山工程项目的岩土勘探技术进行了分析研究,对其中的问题做出了探讨,并提出了一些解决方案供参考。 Since the reform and opening up, China's comprehensive national strength has been significantly improved,and under the promotion of economy and science and technology, the development of all walks of life in China has been significantly increased, of which the mine construction industry as a new pillar industry in China, the scale and number are constantly expanding and increasing. The level and quality of mine engineering construction is the embodiment of a country's comprehensive national strength. In order to make mine engineering projects more scientific, feasible and lasting, geotechnical exploration technology is essential. If the data and information of geotechnical exploration are inaccurate and untrue, it will seriously affect the reliability and safety of mine buildings. This paper mainly analyzes and studies the geotechnical exploration technology of mine engineering project, discusses the problems and puts forward some solutions for reference.
作者 李娟 LI Juan(Hebei Geophysical Exploration Institute,Langfang 065000,China)
出处 《世界有色金属》 2018年第17期231-232,共2页 World Nonferrous Metals
关键词 矿山工程项目 岩土勘查技术 应用实践 mine engineering project geotechnical investigation technology application practice
  • 相关文献

参考文献2

二级参考文献91

  • 1朱喜源,黄文通.桩基检测方法与发展浅谈[J].山西建筑,2007,33(20):129-130. 被引量:17
  • 2Giacheti H L, Cunha R P. In-situ testing ( General reportfor TC 102) [C]. Proceedings of the 18th InternationalConference on Soil Mechanical and GeotechnicalEngineering, Press desp onts,2013 :471-478.
  • 3Comina C, Foti S. Report and discussion-technical sessiongeophysical surveys using mechanical waves, and/ orelectromagnetic techniques [ C ]. Geotechnical andGeophysical Site Characterization 4. 2012, 2,1355-1366.
  • 4Dejong J T. General report for technical Session 1D -In-situtesting [ C ],Proceedings of 17th International Conferenceon Soil Mechanical and Geotechnical Engineering,2009 :3278-3287.
  • 5Mayne P W, Coop M R, Springman S M, et al. Geomaterialbehavior and testing [ C],Proceedings of 17th InternationalConference on Soil Mechanical and GeotechnicalEnginnering, 2009 , 2777-2872.
  • 6Robertson P K,The James K. Mitchell Lecture: Interpretationof in-situ tests-some insights [ C ]. Geotechnical andGeophysical Site Characterization 4, Vol. 1 ( Proc. ISC-4),Taylor & Francis Group,London, 2012: 3-24.
  • 7Lunne T, Robertson P K, Powell J M. Cone penetrationtesting in geotechnical practice [ M ]. Blackie Academicand Professional, London, UK, 1997.
  • 8Campanella R G, Weemees I. Development and use of anelectrical resistivity cone for groundwater contaminationstudies [ J ]. Canadian Geotechnical Journal, 1990,27(5) : 557-567.
  • 9Fukue M,Minato T, Matsumoto M,et al. Use of aresistivity cone for detecting contaminated soil layers [ J].Engineering Geology, 2001,60(1) : 361-369.
  • 10Hryciw R,Raschke S. Development of computer visiontechnique for in situ soil characterization [ J ] .Transportation Research Record : Journal of theTransportation Research Board, 1996( 1526) : 86-97.

共引文献80

同被引文献2

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部