首页> 外文OA文献 >Regional tectonics of the Coso geothermal area along the intracontinental plate boundary in central eastern California: Three-dimensional V_p and V_p/V_s models, spatial-temporal seismicity patterns, and seismogenic deformation
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Regional tectonics of the Coso geothermal area along the intracontinental plate boundary in central eastern California: Three-dimensional V_p and V_p/V_s models, spatial-temporal seismicity patterns, and seismogenic deformation

机译:加利福尼亚中部东部大陆内部板块边界沿Coso地热区的区域构造:三维V_p和V_p / V_s模型,时空地震活动模式和地震成因变形

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摘要

We synthesize the tectonics of the southern Walker Lane belt and Coso Range in central eastern California using regional earthquake data. First, we invert for three-dimensional models of the V_p and V_p/V_s structure of the upper and middle crust. Using these models, we also determine three-dimensional Vs and Poisson’s ratio models. The changes in seismic velocities across the region are small, except for low velocities in sedimentary basins and a ∼2-km positive elevation of the basement velocities (V_p > 6 km/s) beneath the southern Sierra Nevada. Localized low-V_p and low-V_s zones beneath the central Coso Range image a geothermal reservoir at 0- to 3-km depth, as well as distinct low-velocity anomalies in the depth range of ∼8 to ∼12 km. Because the V_p/V_s has average crustal values within this broader zone, we interpret the anomaly to indicate a zone of few percent geothermal brines extending from 8- to 12-km depth. In addition, an embedded highly localized poorly resolved zone (possibly as small as 1 km^3) of slightly above average V_p/V_s and higher Poisson’s ratio is a tentative suggestion of a small volume percent of magma present at depth of ∼10 km. Second, we relocated the seismicity in the region using absolute traveltimes and differential traveltimes determined from waveform cross correlation. The relocated seismicity forms several spatially clustered lineaments along the southeast side of the Sierra Nevada and in the Indian Wells Valley and vicinity of the Coso geothermal field, which coincide with mapped late Quaternary faults in the region. The base of seismicity shallows from a regional depth of about ∼11 to ∼5 km beneath the central Coso Range, which we interpret as evidence for shallowing of the brittle-ductile transition zone beneath the geothermal field. In addition to abundant background seismicity, two large earthquake swarms, located 5 to 8 km to the west of Coso, occurred in April to May 1992 and May to June 2001. Two dual main shock-aftershock sequences also occurred as follows: the 1994 sequence near Ridgecrest and the later Coso earthquake sequence from late 1996 to early 1998, with the pairs of main shocks spaced 47 days and 16 months apart, respectively. Kinematic analysis of the focal mechanisms indicates that the crustal stress loading process varies across the region. The low-Vp anomaly, abundant seismicity, and crustal thinning provide quantitative evidence for the Coso region being an extensional releasing step over between two northwest-striking dextral faults: The Little Lake and Airport Lake fault zones to the south, and the Owens Valley fault to the north.
机译:我们使用区域地震数据合成了南部加利福尼亚中部的Walker Lane带南部和Coso Range的构造。首先,我们反转上,中地壳的V_p和V_p / V_s结构的三维模型。使用这些模型,我们还可以确定三维Vs和泊松比模型。除沉积盆地的低速和内华达山脉南部下方的基底速度正向升高约2 km(V_p> 6 km / s)外,整个地区的地震速度变化很小。中央Coso Range下方的局部低V_p和低V_s区域成像了0至3 km深度的地热储层,以及约8至12 km深度范围内的明显的低速异常。由于V_p / V_s在此较宽区域内具有平均地壳值,因此我们解释该异常以指示从8到12公里深度延伸的地热盐水百分比很少的区域。另外,一个初步的建议是,在约10 km的深度处存在少量的岩浆,这是一个略高于平均水平V_p / V_s和较高的泊松比的高度局部分辨力差的区域(可能小至1 km ^ 3)。其次,我们使用绝对行进时间和根据波形互相关确定的差分行进时间来重新定位该地区的地震活动。重新定位的地震活动沿内华达山脉东南侧和印第安维尔斯山谷以及科索地热田附近形成了几个空间上聚集的地层,与该地区晚第四纪断层相吻合。地震活动的基础从中心科索山脉以下约11至5 km的区域深度变浅,我们将其解释为地热场以下脆性-韧性过渡带变浅的证据。除了丰富的背景地震活动外,1992年4月至5月和2001年5月至2001年6月,发生了两个位于科索以西5至8公里的大型地震群。两个双重主震余震序列如下:1994年序列靠近里奇克莱斯特(Ridgecrest)和后来的科索地震序列(1996年末至1998年初),两对主震之间的间隔分别为47天和16个月。震源机制的运动学分析表明,该地区的地壳应力加载过程有所不同。低Vp异常,丰富的地震活动和地壳变薄提供了定量的证据,表明科索地区是两个西北向右旋断层(南部的小湖和机场湖断层带以及欧文斯谷断层)之间的扩张释放步骤。去北边。

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