首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Bimaterial interfaces at the Karadere segment of the North Anatolian Fault, northwestern Turkey
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Bimaterial interfaces at the Karadere segment of the North Anatolian Fault, northwestern Turkey

机译:土耳其西北部北安纳托利亚断层Karadere段的双材料界面

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摘要

We image velocity contrast (bimaterial) interfaces along the Karadere Fault of the North Anatolian Fault Zone, toward the eastern part of the 1999 Izmit M-w 7.4 rupture in NW Turkey, using waveforms recorded by a local seismic network. Applying an automatic procedure for identification and picking of fault zone head waves (FZHW) and direct P arrivals, and manually revising the picks through particle motion analysis, we identify two different groups of FZHW as well as fault zone reflected waves (FZRW). The first group of FZHW has a moveout with respect to the direct P arrivals with distance traveled along the fault, indicating a deep bimaterial interface down to the base of the seismogenic crust with an average velocity contrast of similar to 3.4%. The second group of FZHW has a constant time difference from the direct P arrivals and is associated with a shallow local interface bounding a low-velocity damage zone or basin structure that extends to a depth of 4-5km. While the first group of FZHW exists on the slower crustal block, the second group of FZHW and the FZRW are present generally on both sides of the fault. These phases add to the richness and complexity of the early P waveforms observed at stations close to a large fault. The relatively low velocity contrast across the Karadere Fault compared to values to the west may have helped stopping the Izmit rupture.
机译:我们使用当地地震台网记录的波形,对北安那托利亚断层带的卡拉德断裂带的速度对比(双材料)界面向土耳其西北部1999年伊兹密特M-w 7.4破裂的东部成像。应用自动程序来识别和拾取断层带波(FZHW)和直接的P波到达,并通过粒子运动分析来手动修改拾取,我们识别出FZHW和断层带反射波(FZRW)的两组不同。 FZHW的第一组相对于直接P到达具有沿断层的距离的跳动,表明深双物质界面一直向下延伸到成地震地壳的底部,平均速度差约为3.4%。 FZHW的第二组与直接P到达具有恒定的时间差,并且与浅层局部界面相关联,该局部界面界定了延伸至4-5 km深度的低速破坏区或盆地结构。第一组FZHW存在于较慢的地壳块上,而第二组FZHW和FZRW通常存在于断层的两侧。这些阶段增加了在靠近大断层的站点观测到的早期P波形的丰富性和复杂性。与西边的数值相比,穿过Karadere断层的速度反差相对较低,可能有助于阻止伊兹密特破裂。

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