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首页> 外文期刊>物理探查 >Logging in a fault fracture zone -- A case study at Hirabayashi NIED borehole drilled through Nojima fault
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Logging in a fault fracture zone -- A case study at Hirabayashi NIED borehole drilled through Nojima fault

机译:断层断裂带的测井-以野岛断裂钻的平林NIED钻孔为例

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摘要

The Hyogo-ken Nanbu earthquake (1995.1, M_(JMA) = 7.2) activated the Nojima fault in the northern part of Awaji Island, southwest Japan and a surface rupture appeared more than 10 km long. After the earthquake, the Hirabayashi NIED borehole was drilled penetrating through the fault zone to a depth of 1838 m from a point about 302 m SE from the surface trace of the Nojima fault. In the borehole, physical well logging was done from 251 m depth down to the bottom. Cores were recovered from 1000 m depth with an almost 100 percent recovery rate. In the cores, remarkable fractured zones containing cataclastic rocks were found at three depths, around 1140 m, 1300 m and 1800 m. Results of well logging show that, in the depth interval of host granitic rocks, normal resistivity is from several hundreds to several thousands ohm centre dot m, micro resistivity is several tens ohm centre dot m, P wave velocity is 5-6 km/sec, density is about 2.6 g/cm~3 and neutron porosity is several percent. On the other hand, in the depth interval of the fracture zone, those properties decrease down to several tens ohm centre dot m, several ohm centre dot m, 2-4 km/sec, 1.5-2.0 g/cm~3 and increase up to several tens percent, respectively. Investigating correlations between physical properties measured by well logging, characteristic features are indicated in the fracture zones In the fracture zones, neutron porosity is beyond 10 percent and P wave velocity is less than 5 km/sec, the density decrease more steeply and normal resistivity in logarithmic scale increases more gently with the increase of neutron porosity than in the depth interval of host rocks. The P wave velocity does not have a good correlation with the neutron porosity and the normal resistivity does not obey the Archie's relation in the fracture zones. The fracture zone at a depth of 1800 m indicates some different characters from the other two fracture zones; P wave velocity, density and neutron porosity appear to change gently contrasting to a remarkable decrease of normal resistivity. In the shallower fracture zones, all of those properties change remarkably. The difference between fracture zones may reflect their fracturing history during past earthquake cycles.
机译:兵库县南部地震(1995.1,M_(JMA)= 7.2)激活了日本西南部淡路岛北部的野岛断裂,地表破裂出现了10多公里。地震后,平野NIED钻孔从野岛断层的表面轨迹出发,从断层带穿透约302 m SE的深度,穿透了断层带,深度达1838 m。在井眼中,从251 m深度到底部进行了物理测井。从1000 m深度回收岩心,回收率几乎达到100%。在岩心中,在1140 m,1300 m和1800 m的三个深度处发现了包含碎裂岩的显着裂缝带。测井结果表明,在主体花岗岩的深度区间内,法向电阻率为数百至数千欧姆中心点m,微电阻率为数十欧姆中心点m,P波速度为5-6 km / sec密度约为2.6 g / cm〜3,中子孔隙率为百分之几。另一方面,在断裂带的深度区间内,这些性能下降到几十欧姆中心点m,几欧姆中心点m,2-4 km / sec,1.5-2.0 g / cm〜3并增加到百分之几十。研究通过测井测得的物理性质之间的相关性,在裂缝带中显示出特征特征。在裂缝带中,中子孔隙率超过10%,P波速度小于5 km / sec,密度下降得更陡,法向电阻率降低。与中子孔隙度的增加相比,对数尺度的增加比在主体岩石的深度区间的增加更缓和。 P波速度与中子孔隙率没有很好的相关性,在断裂带中法向电阻率不服从阿奇关系。 1800 m深度的断裂带显示出与其他两个断裂带不同的特征。与正常电阻率的显着下降相比,P波速度,密度和中子孔隙率似乎发生了缓慢变化。在较浅的断裂带中,所有这些特性均发生显着变化。断裂带之间的差异可能反映了过去地震周期中的断裂历史。

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