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Horizontal sliding of kilometre-scale hot spring area during the 2016 Kumamoto earthquake

机译:2016年熊本地震中千米级温泉区的水平滑动

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摘要

We report horizontal sliding of the kilometre-scale geologic block under the Aso hot springs (Uchinomaki area) caused by vibrations from the 2016 Kumamoto earthquake (Mw 7.0). Direct borehole observations demonstrate the sliding along the horizontal geological formation at ~50 m depth, which is where the shallowest hydrothermal reservoir developed. Owing to >1 m northwest movement of the geologic block, as shown by differential interferometric synthetic aperture radar (DInSAR), extensional open fissures were generated at the southeastern edge of the horizontal sliding block, and compressional deformation and spontaneous fluid emission from wells were observed at the northwestern edge of the block. The temporal and spatial variation of the hot spring supply during the earthquake can be explained by the horizontal sliding and borehole failures. Because there was no strain accumulation around the hot spring area prior to the earthquake and gravitational instability could be ignored, the horizontal sliding along the low-frictional formation was likely caused by seismic forces from the remote earthquake. The insights derived from our field-scale observations may assist further research into geologic block sliding in horizontal geological formations.
机译:我们报告了由2016年熊本地震(Mw 7.0)的振动引起的麻生温泉(内牧地区)下千米级地质区块的水平滑动。直接井眼观测表明,在约50μm的深度沿水平地质构造滑动,这是最浅的热液储层发育的地方。由于地质块向西北移动超过1μm,如差分干涉合成孔径雷达(DInSAR)所示,在水平滑动块东南边缘产生了张开裂缝,并观察到了井眼的压缩变形和自发散发在街区的西北边缘。地震过程中温泉供应的时空变化可以用水平滑动和井眼破坏来解释。由于地震之前温泉附近地区没有应变积累,可以忽略重力失稳,因此沿低摩擦地层的水平滑动可能是由遥远地震引起的地震力引起的。从我们的现场观测中获得的见解可能有助于进一步研究水平地质构造中的地质块滑动。

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