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物理探査法による掘削影響領域のモニタリング; 深度140m, 250m水平坑道の掘削時における調査

Monitoring of the excavation damaged zone (EDZ) by geophysical methods during the test tunnel excavation at a depth of 140 m and 250 m

窪田 健二*; 近藤 桂二; 榊原 淳一*

Kubota, Kenji*; Kondo, Keiji; Sakakibara, Junichi*

高レベル放射性廃棄物の地層処分の実施において、地下坑道の掘進に伴い生じる掘削影響領域を評価することは、処分の安全性を評価するうえで重要な課題の一つである。そこで、日本原子力研究開発機構の幌延深地層研究施設に掘削された、深度140m及び250m坑道の掘削前後に物理探査(比抵抗トモグラフィ及び音響トモグラフィ)の繰り返し測定を行い、掘削影響領域の広がりに関する評価を行った。本講演では、その概要について発表する。

To evaluate the excavated damaged zone (EDZ) is one of the important factors to conduct high level radioactive waste disposal. We have conducted resistivity and acoustic tomography to evaluate EDZ during the excavation of the test tunnel at a depth of 140 m and 250 m. As a result, a few meters extent of high resistivity and low P-wave velocity zone were detected at a depth of 140 m. This suggests that EDZ by excavation of horizontal tunnel was estimated by resistivity and acoustic tomography. On the other hand, high resistivity zone were not detected at a depth of 250 m.

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