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首页> 外文期刊>Geophysical Research Letters >Testing for fault activity at Yucca Mountain, Nevada, using independent GPS results from the BARGEN network
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Testing for fault activity at Yucca Mountain, Nevada, using independent GPS results from the BARGEN network

机译:使用来自BARGAIN网络的独立GPS结果,在内华达州尤卡山进行断层活动测试

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摘要

Data from BARGEN GPS stations around Yucca Mountain (YM) have been independently processed using GIPSY-OASIS and GAMIT/GLOBK. The RMS velocity differences between these solutions is 0.06 mm/yr ( east component) and 0.10 mm/yr ( north), indicating an ability to resolve tectonic signals > 0.3 mm/yr with high confidence. Inversion of GPS station velocities for Eastern California Shear Zone (ECSZ) fault parameters produces an unreasonably deep locking depth of similar to 30 km for the Death Valley-Furnace Creek fault system, contradicting seismological evidence. The GPS cluster locally west of YM observes a strain rate of 17.0 +/- 1.8 ns/yr, marginally higher than our ECSZ model predicts (13.9 +/- 0.7 ns/yr). Significantly, the cluster to the east observes 22.3 +/- 2.1 ns/yr, which is 6.2 sigma higher than the model (8.6 +/- 0.7 ns/yr), suggesting that additional sources of strain more local to YM (< 30 km) are currently active, collectively accumulating > 0.7 mm/yr.
机译:来自Yucca Mountain(YM)周围BARGEN GPS站的数据已使用GIPSY-OASIS和GAMIT / GLOBK独立处理。这些解决方案之间的RMS速度差为0.06 mm / yr(东部分量)和0.10 mm / yr(北部),表明能够以较高的置信度解析大于0.3 mm / yr的构造信号。对美国东部加利福尼亚剪切带(ECSZ)断层参数进行GPS站速度反演会产生不合理的深锁定深度,对于死亡谷-熔炉溪断层系统而言,该深度类似于30 km,与地震证据相矛盾。 YM西侧的GPS集群观测到的应变率为17.0 +/- 1.8 ns / yr,略高于我们的ECSZ模型预测的应变率(13.9 +/- 0.7 ns / yr)。值得注意的是,东部的星团观测到22.3 +/- 2.1 ns / yr,比模型(8.6 +/- 0.7 ns / yr)高6.2 sigma,表明在YM处(<30 km )目前处于活跃状态,累计积累> 0.7毫米/年。

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