Research and development of downhole very broadband seismograph and its innovation
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摘要: 井下甚宽频带地震观测能获取来自地球内部微弱的、丰富的、准确的宽频带地壳活动信息,包括地层微破裂、慢地震等,对地震学、地震预报和相关学科均有重要的科学研究意义和实际应用价值。研制具有我国自主知识产权的井下甚宽频带地震仪,并推进其工程化、产业化是地震观测仪器发展的重要方向之一。本文介绍了国家重点研发项目重大科学仪器设备开发专项 “井下甚宽频带地震仪的研制与应用开发” 的研究目标、研究内容及主要创新点。项目首次在国内外成功研制了可应用于2000 m深井观测的、完全自主知识产权的甚宽频带地震仪,并将在国家级重大项目中示范应用,打破了国外在井下甚宽频带地震观测的领先地位,促进了国内地震观测科学技术的发展。项目的主要进展将在项目专题中的4篇文章中分别进行介绍。Abstract: Downhole very broadband seismograph can obtain weak, rich and accurate broadband crust motion information, including formation microfracture and slow earthquake. It is one kind of critical instruments which is widely applied in seismology, earthquake prediction and related disciplines. Research and development of downhole very broadband seismograph with China independent intellectual property and promoting its engineering and industrialization is one of most important directions of seismic observation instruments. In this paper, we introduce the research objectives, research contents and main innovations of ‘Research and application development of downhole very broadband seismograph’, which is a project of National Key Foundation for Exploring Scientific Instrument of China National Key Research and Development Program. In this project, we successfully developed a very broadband seismograph product with China independent intellectual property that can be deployed at 2000 m depth boreholes and will be demonstratively applied in China national major projects. This marks the break-up of the leading position of foreign countries in the field of deep borehole very broadband seismic observation by China product. It will also promotes the development of China seismic observation technology. Besides this article, we will use other four articles in this column to introduce the details of main progress of this project.
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Key words:
- very broadband /
- downhole seismograph
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[1] National Academy of Sciences. Review of NASA’s earth science enterprise research strategy for 2000— 2010[R/OL]. [2022-01-27]. https://www.nap.edu/read/9960/chapter/1 [2] 彼得•鲍曼. 新地震观测实践手册[M]. 中国地震局监测预报司, 译. 北京: 地震出版社, 2006: 323-325Bowman P. New manual of seismological observatory practice[M]. Department of Earthquake Monitoring and Prediction of China Earthquake Administration, Translator. Beijing: Seismological Press, 2006: 323-325 [3] Havskov J, Alguacil G. 地震观测技术与仪器[M]. 赵仲和, 赵建和, 译. 北京: 地震出版社, 2007: 1-4Havskov J, Alguacil G. Seismic observation technology and instrument[M]. Zhao Z H, Zhao J H, Translator. Beijing: Seismological Press, 2007: 1-4 [4] 李丽,罗新恒,关作金,等. 我国井下甚宽频带地震仪研制与应用开发新进展[J]. 国际地震动态,2016(10):1-3 doi: 10.3969/j.issn.0235-4975.2016.10.001Li L,Luo X H,Guan Z J,et al. New development and application of downhole very broadband seismograph in China[J]. Recent Developments in World Seismology,2016(10):1-3 doi: 10.3969/j.issn.0235-4975.2016.10.001 [5] 吴鹏,李欣波,刘永刚,等. 井下地震计的安装[J]. 内陆地震,2016,30(2):185-190Wu P,Li X B,Liu Y G,et al. Installation of underground seismometer[J]. Inland Earthquake,2016,30(2):185-190 [6] 冯德益, 敖雪明, 毛可, 等. 地震勘探资料在地震预报研究中的应用[C]//中国地震学会. 中国地震学会第三次全国地震科学学术讨论会论文摘要汇编. 北京: 中国地震学会, 1986Feng D Y, Ao X M, Mao K, et al. Application of seismic exploration data in seismic prediction[C]//Seismological Society of China. Abstracts of the Third National Symposium on Earthquake Science of China Seismological Society. Beijing: Seismological Society of China, 1986 [7] 修济刚. 我国井下地震观测研究概述[J]. 国际地震动态,1988(6):1-4Xiu J G. An outline of research on borehole seismic observations in China[J]. Recent Developments in World Seismology,1988(6):1-4 [8] Borehole and sub-surface instruments. Güralp Systems Limited[EB/OL]. [2022-01-18]. https://www.guralp.com/products/borehole-and-sub-surface [9] 胡米东,毛华锋,陈启林,等. 江苏地区CMG-3TB地震计运行分析[J]. 四川地震,2018(3):36-41Hu M D,Mao H F,Chen Q L,et al. Operation analysis of CMG-3TB seismometer in Jiangsu[J]. Earthquake Research in Sichuan,2018(3):36-41 -