新一代数字式海底地震仪的设计——现状与展望

D. Ilinskiy, Д А Ильинский, A. A. Ginzburg, А А Гинзбург, V. V. Voronin, Вячеслав Владимирович Воронин, O. Ganzha, О Ю Ганжа, A. Manukin, Анатолий Борисович Манукин, K. Roginskiy, Константин Александрович Рогинский
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引用次数: 1

摘要

本文介绍了21世纪初以来研制的自弹出式数字海底地震仪的比较特点。提出了研制新一代自弹式海底地震仪应考虑的主要技术特性要求。单片机和基准频率发生器是海底地震仪设计的关键部件。本文给出了这些关键部件的研制结果,它们对地震仪的性能(功耗和功能)至关重要。提出了黑海俄罗斯段海底地震勘探项目的建议草案,解决了目前的实际地质问题。该项目的实施将有助于确定Shatsky脊和Tuapse凹陷内结晶基底的深度;沉积盖层下部和基底的横波速度检测,以及地壳厚度的细化。将区域海底地震线从黑海的土耳其部分延伸到俄罗斯部分,将使科学家们更清楚地了解整个黑海东部盆地的地壳结构。海底研究的结果将验证和改进黑海2011年拖曳拖缆(10公里拖缆)对沉积盖层结构和地壳的调查结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards а design of new generation digital seismic seabed seismographs – current state and future outlook
The paper presents the comparative characteristics of self-pop-up digital seabed seismometers that have been developed since the early 2000s. The requirements for the main technical characteristics that should be considered for developing the new-generation of self-pop-up seabed seismometers have been proposed. The microcontroller and reference frequency generator are the key parts for a seabed seismometer design. The paper provides the development results of these key components, which are essential for the seismometer performance (power consumption and functionality). A draft proposal for seabed seismic exploration project in the Russian sector of the Black Sea solving the current actual geological problems is presented. Implementation of the project will contribute to determination of the crystalline basement depth within the Shatsky ridge and the Tuapse depression; detection of P and S wave velocities in the lower part of sedimentary cover and in the basement, and to the refinement of the Earth’s crust thickness. The extension of regional seabed seismic lines from the Turkish to the Russian sector of the Black Sea will give the scientists a clearer picture of the Earth’s crust structure over the whole east Black Sea basin. The results of seabed studies will verify and improve the results of the Black Sea 2011 towed-streamer survey (with 10 km streamer) on the sedimentary cover structure and the Earth’s crust.
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