首页> 外文期刊>地質学雑誌 >地層処分地選定のための地質環境調査技術の実証研究:調査段階に応じた地質環境モデルの構築と調査手法の適用性検討
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地層処分地選定のための地質環境調査技術の実証研究:調査段階に応じた地質環境モデルの構築と調査手法の適用性検討

机译:地质处置场所选择的地质环境调查技术论证研究:根据调查阶段建立地质环境模型及检验方法的适用性

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摘要

The Yokosuka Demonstration and Validation Project, which uses the Yokosuka Central Research Institute of Electric Power Industry (CRIEPI) site, a Neogene sedimentary and coastal environment, has been conducted since the 2006 fiscal year as a cooperative research project between NUMO (Nuclear Waste Management Organization of Japan) and CRIEPI. The objectives of this project were to examine and refine the basic methodology of the investigation and assessment in accordance with the conditions of geological environment at each stage of investigations from the surface (Preliminary Investigation and the first half of Detailed Investigation conducted by NUMO) for high level radioactive waste geological disposal. Within investigation technologies at these early stages, a borehole survey is an important means of directly obtaining various properties of the deep geological environment. On the other hand, surface geophysical prospecting data provide;information about the geological and resistivity structures at depth for planning borehole surveys. During the 2006-2009 fiscal years, a series of on-site surveys and tests, including borehole surveys of YDP-1 (depth: 350 m) and YDP-2 (depth: 500 m), were conducted in this test site. Furthermore, seismic surveys (including seismic reflection method) and electromagnetic surveys (including magnetotelluric method) were conducted within the expanded CRIEPI site in the 2010 fiscal year to obtain information about the geological structure, and the resistivity structure reflecting the distribution of the salt water/fresh water boundary, respectively, to a depth of over several hundred meters. The validity of existing survey and testing methods for stepwise investigations (from surface to borehole surveys) for obtaining properties of the geological environment (in various conditions relating to differences in the properties of the Miura and the Hayama Groups at this site) was confirmed through establishing site descriptive models based on the results of the above surveys.
机译:自2006财政年度以来,作为NUMO(核废料管理组织)之间的合作研究项目,开展了横须贺示范与验证项目,该项目利用了横须贺中央电力研究所(CRIEPI)的场地,该区域是新近沉积和沿海环境。日本)和CRIEPI。该项目的目标是根据地表各个调查阶段(初步调查和NUMO进行的详细调查的前半部分)的地质环境条件,检查和完善调查和评估的基本方法。放射性废物地质处置。在这些早期阶段的勘探技术中,钻孔勘探是直接获得深部地质环境各种特性的重要手段。另一方面,地面地球物理勘探数据提供了用于计划井眼勘测的有关深部地质和电阻率结构的信息。在2006-2009财政年度期间,在该测试地点进行了一系列现场调查和测试,包括YDP-1(深度:350 m)和YDP-2(深度:500 m)的井眼调查。此外,在2010财年,在扩展的CRIEPI场地内进行了地震勘测(包括地震反射法)和电磁勘测(包括大地电磁法),以获取有关地质结构和反映盐水分布的电阻率结构的信息。淡水边界分别达到数百米的深度。通过建立,确认了用于逐步调查(从地表到钻孔调查)以获得地质环境特性(在与该地点的Miura和Hayama群的特性差异有关的各种条件下)的逐步调查(从地表到钻孔调查)的现有调查和测试方法的有效性。基于上述调查结果的站点描述性模型。

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