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Seismotectonics of the Newport-Inglewood fault zone in the Los Angeles basin, southern California

机译:加利福尼亚南部洛杉矶盆地的纽波特-英格伍德断裂带的地震构造

摘要

The Newport-Inglewood fault zone (NIF) strikes northwest along the western margin of the Los Angeles basin in southern California. The seismicity (1973 to 1985) of M_L ≧ 2.5 that occurred within a 20-km-wide rectangle centered on the NIF extending from the Santa Monica fault in the north to Newport Beach in the south is analyzed. A simultaneous full inversion scheme (VELEST) is used to invert for hypocentral parameters, two velocity models, and a set of station delays. Arrival time data from three quarry blasts are included to stabilize the inversion. The first velocity model applies to stations located along the rim and outside the Los Angeles basin and is well resolved. It is almost identical to the starting model, which is the model routinely used by the CIT/USGS southern California seismic network for locating local earthquakes. The second velocity model applies to stations located within the Los Angeles basin. It shows significantly lower velocities down to depths of 12 to 16 km, which is consistent with basement of Catalina Schist below the sediments in the western Los Angeles basin. The distribution of relocated hypocenters shows an improved correspondence to mapped surface traces of late Quaternary fault segments of the NIF. A diffuse trend of seismicity is observed along the Inglewood fault from the Dominguez Hills, across the Baldwin Hills to the Santa Monica fault in the north. The seismicity adjacent to Long Beach, however, is offset 4 to 5 km to the east, near the trace of the subsurface Los Alamitos fault. The depth distribution of earthquakes along the NIF shows clustering from 6 to 11 km depth, which is similar to average seismogenic depths in southern California. Thirty-nine single-event focal mechanisms of small earthquakes (1977 to 1985) show mostly strike-slip faulting with some reverse faulting along the north segment (north of Dominguez Hills) and some normal faulting along the south segment (south of Dominguez Hills to Newport Beach). The results of an inversion of the focal mechanism data for orientations of the principal stress axes and their relative magnitudes indicate that the minimum principal stress is vertical along the north segment while the intermediate stress is vertical along the south segment. The maximum principal stress axis is oriented 10° to 25° east of north. Reverse faulting along the north segment indicates that a transition zone of mostly compressive deformation exists between the Los Angeles block and the Central Transverse Ranges.
机译:纽波特-英格伍德断裂带(NIF)沿着加利福尼亚南部洛杉矶盆地西缘的西北走向。分析了M_L≥2.5的地震活动度(1973年至1985年),该地震发生在以NIF为中心的20公里宽的矩形内,该矩形从北部的圣塔莫尼卡断层延伸到南部的纽波特海滩。同时完全反演方案(VELEST)用于反震力参数,两个速度模型和一组站延迟的反演。包括来自三个采石场爆炸的到达时间数据以稳定反演。第一个速度模型适用于沿边缘和洛杉矶盆地外部的台站,并且得到了很好的解析。它几乎与初始模型相同,后者是CIT / USGS南加州地震网络常规用于定位局部地震的模型。第二速度模型适用于位于洛杉矶盆地内的站点。它显示出低至12至16 km的速度,这与洛杉矶盆地西部沉积物下方的Catalina Schist地下室一致。重定位震源的分布显示出与NIF晚第四纪断层段的映射表面轨迹的对应关系得到了改善。从多明格斯山(Dominguez Hills)穿过鲍德温山(Baldwin Hills)到北部的圣莫尼卡(Santa Monica)断层,沿着英格伍德断层观察到地震活动的扩散趋势。然而,与长滩相邻的地震活动向东偏移了4至5公里,靠近Los Alamitos地下断层的痕迹。 NIF沿地震的深度分布显示出从6到11 km的深度聚类,这与加利福尼亚南部的平均地震发生深度相似。小地震的三十九个单事件震源机制(1977年至1985年)显示出走滑断层,北段(多明格斯山北部)和南段(多明格斯山南段至多明格斯山,北至多明格斯山到南段)纽波特海滩)。对主应力轴方向及其相对大小的震源机制数据的反演结果表明,最小主应力沿北段垂直,而中间应力沿南段垂直。最大主应力轴位于北方以东10°至25°。沿着北段的逆断层表明,在洛杉矶地块和中央横向范围之间存在一个大部分为压缩变形的过渡带。

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    Hauksson Egill;

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  • 年度 1987
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