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The strength of faults in the crust in the western United States

机译:美国西部地壳断层的强度

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摘要

The strength of secondary faults within plate-boundary zones and of master faults like the San Andreas has been controversial for decades. We use a global finite-element code with a variable-resolution grid and global plate-driving forces to determine whether the effective friction μ on the San Andreas fault is high (μ~* 0.6-1), intermediate (μ~* 0.3-0.5) or low (μ~* ≤ 0.2), whether a single value of μ~* can be used for all mapped faults within California, and whether weakening of the ductile lower crust associated with faulting is important. We compare our model results with existing data on fault slip-rates, GPS velocities, stress field, and earthquake depth distribution. The comparison indicates that all faults are weak (μ~* ≤ 0.2), and that additional weakening of major faults is important. All viable solutions also indicate that weakening of the lower crust below major faults is necessary. The strongest faults in the region have μ~* in the range 0.2-0.05. The San Andreas fault is a very weak fault among weak faults, with μ~* < 0.05. Our results also show that a global code with appropriate grid-refinement and driven by global plate motions can reasonably reproduce regional tectonics.
机译:数十年来,板块边界区域内的次生断裂和像圣安德烈亚斯这样的主断裂的强度一直存在争议。我们使用具有可变分辨率网格和整体板驱动力的整体有限元代码来确定San Andreas断层上的有效摩擦力μ是否高(μ〜* 0.6-1),中等(μ〜* 0.3- 0.5)或低(μ〜*≤0.2),是否可以将单个μ〜*值用于加利福尼亚州内的所有映射断层,以及弱化与断层有关的韧性下地壳是否重要?我们将模型结果与有关断层滑动率,GPS速度,应力场和地震深度分布的现有数据进行比较。比较表明,所有断层都是弱的(μ〜*≤0.2),另外重要的断层弱化也很重要。所有可行的解决方案还表明,有必要弱化主要断层以下的下地壳。该区域中最强的断层的μ〜*范围为0.2-0.05。 San Andreas断层是弱断层中的一个非常弱的断层,μ〜* <0.05。我们的结果还表明,具有适当网格细化并由整体板块运动驱动的全局代码可以合理地再现区域构造。

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