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CURRENT R D ACTIVITIES IN THE STUDY ON GEOSPHERE STABILITY

机译:目前研发在地理学稳定性研究中的活动

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The Japanese islands are located in a tectonically active zone. The scientific base is required for assessing the geosphere stability for long-term isolation of radioactive waste in Japan. JAEA is promoting the establishment of investigation method for geotectonic events affecting geosphere stability and prediction model for the future changes of geological environments, that is necessary for site selection and safety assessment of the HLW geological disposal. For seismicity and faulting, detection techniques for active faults without topographic surface expression, such as using helium isotope ratios in hot spring gases or detection of hydrogen gas, and studies on the assessment of fault evolution have been developed. For volcanism and geothermal activity, heat sources for anomalous geothermal activity in non-volcanic regions are considered. Detection techniques for high-temperature fluids and magma deep underground, using geophysical and geochemical approaches, were constructed. For uplift, denudation and climatic/sea-level changes, a methodology to predict the future topographic change was developed. Also, for dating techniques as an essential part to proceed on these studies, C-14 and Be-10 dating using AMS and (U-Th)/He dating using QMS and ICP-MS have been developed. We are planning the establishment of assessment methods for geosphere stability including assessment of the activity of faults encountered in underground excavations, development of long-term prediction model of volcanism and hydrothermal activities, and hydrogeological analyses considering topographic change.
机译:日本岛屿位于一个根本活动的区域。科学基地是评估日本放射性废物长期隔离的地理学稳定性。 JAEA正在促进影响地理学稳定性和预测模型的地理位置事件的调查方法,以实现地质环境的未来变化,即网站选择和HLW地质处置的安全评估所必需的。对于地震性和故障,没有地形表面表达的有源故障的检测技术,例如在热弹性气体中使用氦同位素比或氢气的检测,以及对故障进化评估的研究。对于山脉和地热活动,考虑了非火山地区异常地热活动的热源。建造了使用地球物理和地球化学方法的高温流体和岩浆地下地下地下的检测技术。对于提升,剥蚀,剥削和气候/海平面变化,制定了一种预测未来地形变化的方法。此外,对于在这些研究中进行的重要组件,已经开发了使用AMS和(U-TH)/ HE使用QMS和ICP-MS的C-14和BE-10约会。我们计划建立地理学稳定性的评估方法,包括评估地下挖掘中遇到的故障活动,发展的火山和水热活动的长期预测模型,以及考虑地形变化的水文地质分析。

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