首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Crustal Extension and Graben Formation by Fault Slip-Associated Pore Opening, Kyushu, Japan
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Crustal Extension and Graben Formation by Fault Slip-Associated Pore Opening, Kyushu, Japan

机译:故障滑动相关孔隙开口,九州,日本的地壳延伸和Graben组

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Crustal extension in graben takes place by normal (+strike-slip) faulting, yet the physical processes involved are poorly understood. A series of shallow large earthquakes struck the Kumamoto area of Kyushu, Japan, in 2016. The M_w7.0 main shock was a slip along the southern boundary of the Beppu-Shimabara Graben, where NS-extensional crustal deformation is now taking place. We conducted a tomographic inversion for crustal P and S velocities and Poisson's ratio (V_p, V_s, and σ) in Kyushu. The most outstanding feature in this region is a Beppu-Shimabara Graben-parallel belt of low V_p and V_s anomalies at depths of the upper crust. We find that within the belt dV_s/V_s ≈ dV_p/V_p (<0) in marked contrast to relations in other low-velocity regions where |dV_s/V_s| > |dV_p/V_p|. This observation can be interpreted as due to water-saturated, oblate-spheroid pores with either of two very different geometries: one almost round pore and the other very flat pore. We calculate 3-D density anomaly distributions and 2-D gravity anomaly profiles for these two pore models. The gravity anomaly map calculated for spherical pores shows a significant negative anomaly belt that spatially agrees with observed Bouguer anomaly map. The spatial agreement is very poor if pores are modeled as flat. This and extensive seismicity within Beppu-Shimabara Graben imply significance of fault-associated round pore formation in the process of graben opening. Seismic tomography combined with gravity and poroeasticty analyses can constrain the crack/pore state of extensionally deforming crust.
机译:Graben中的地壳延伸通过正常(+滑动滑移)断层进行,但涉及的物理过程明白很差。 2016年,一系列浅层大地震袭击了九州九州的熊本区。M_W7.0主要震动是沿着Beppu-Shimabara Graben的南部边界的滑动,现在正在进行NS-Liqualional Clustal变形。我们在九州的地壳p和s速度和泊松比(v_p,v_s和σ)进行了分拆反演。该地区最突出的特征是低V_P的Beppu-shimabara Graben-Parallate带,在上层地壳的深度处为低V_P和V_S异常。我们发现在皮带DV_S /V_S≈DV_P/ V_P(<0)中标记对比与其他低速区域的关系,其中DV_S / V_S | > | dv_p / v_p |。这种观察可以解释为由于两种非常不同的几何形状中的饱和,圆形球体孔隙,其中一个几乎圆孔和其他非常平坦的孔。我们计算这两个孔模型的3-D密度异常分布和2-D重力异常曲线。为球形孔隙计算的重力异常图显示了一个显着的阴性异常带,在空间上同意观察到的Bouguer异常图。如果毛孔被建模为单位,则空间协议非常差。在Beppu-shimabara Graben中的这种和广泛的地震性意味着在Graben开放过程中发生故障相关的圆孔形成的意义。地震断层扫描结合重力和波罗口径分析可以限制裂缝/孔径的基部的裂缝/孔隙状态。

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