会议论文详细信息
World Multidisciplinary Earth Sciences Symposium 2016
Relationship Between Faults Oriented Parallel and Oblique to Bedding in Neogene Massive Siliceous Mudstones at The Horonobe Underground Research Laboratory, Japan
Hayano, Akira^1 ; Ishii, Eiichi^1
Horonobe Underground Research Center, Japan Atomic Energy Agency, Hokkaido, Japan^1
关键词: Bedding planes;    Drill core;    Fault gouge;    Fracture mapping;    Hokkaido;    Horonobe underground research laboratories;    Neo genes;    Siliceous mudstone;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/44/2/022004/pdf
DOI  :  10.1088/1755-1315/44/2/022004
来源: IOP
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【 摘 要 】

This study investigates the mechanical relationship between bedding-parallel and bedding-oblique faults in a Neogene massive siliceous mudstone at the site of the Horonobe Underground Research Laboratory (URL) in Hokkaido, Japan, on the basis of observations of drill-core recovered from pilot boreholes and fracture mapping on shaft and gallery walls. Four bedding-parallel faults with visible fault gouge, named respectively the MM Fault, the Last MM Fault, the S1 Fault, and the S2 Fault (stratigraphically, from the highest to the lowest), were observed in two pilot boreholes (PB-V01 and SAB-1). The distribution of the bedding-parallel faults at 350 m depth in the Horonobe URL indicates that these faults are spread over at least several tens of meters in parallel along a bedding plane. The observation that the bedding-oblique fault displaces the Last MM fault is consistent with the previous interpretation that the bedding- oblique faults formed after the bedding-parallel faults. In addition, the bedding-parallel faults terminate near the MM and S1 faults, indicating that the bedding-parallel faults with visible fault gouge act to terminate the propagation of younger bedding-oblique faults. In particular, the MM and S1 faults, which have a relatively thick fault gouge, appear to have had a stronger control on the propagation of bedding-oblique faults than did the Last MM fault, which has a relatively thin fault gouge.

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