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首页> 外文期刊>Journal of structural geology >Hydrothermal frictional strengths of rock and mineral samples relevant to the creeping section of the San Andreas Fault
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Hydrothermal frictional strengths of rock and mineral samples relevant to the creeping section of the San Andreas Fault

机译:与圣安德烈亚斯断层蠕变区有关的岩石和矿物样品的水热摩擦强度

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We compare frictional strengths in the temperature range 25-250 degrees C of fault gouge from SAFOD (CDZ and SDZ) with quartzofeldspathic wall rocks typical of the central creeping section of the San Andreas Fault (Great Valley sequence and Franciscan Complex). The Great Valley and Franciscan samples have coefficients of friction, mu > 035 at all experimental conditions. Strength is unchanged between 25 and 150 degrees C, but mu increases at higher temperatures, exceeding 0.50 at 250 degrees C. Both samples are velocity strengthening at room temperature but show velocity-weakening behavior beginning at 150 degrees C and stick-slip motion at 250 degrees C. These rocks, therefore, have the potential for unstable seismic slip at depth. The CDZ gouge, with a high saponite content, is weak (mu = 0.09-0.17) and velocity strengthening in all experiments, and mu decreases at temperatures above 150 degrees C. Behavior of the SDZ is intermediate between the CDZ and wall rocks mu < 0.2 and does not vary with temperature. Although saponite is probably not stable at depths greater than similar to 3 km, substitution of the frictionally similar minerals talc and Mg-rich chlorite for saponite at higher temperatures could potentially extend the range of low strength and stable slip down to the base of the seismogenic zone. Published by Elsevier Ltd.
机译:我们比较了SAFOD(CDZ和SDZ)断层泥在25-250摄氏度温度范围内的摩擦强度与San Andreas断层(大河谷序列和Franciscan Complex)中央蠕变段典型的石英长石围岩的摩擦强度。在所有实验条件下,大山谷和方济各会样品的摩擦系数μ> 035。强度在25至150摄氏度之间没有变化,但在较高温度下mu会增加,在250摄氏度下会超过0.50。这两个样品在室温下都具有速度增强作用,但从150摄氏度开始表现出速度减弱的行为,在250摄氏度下出现粘滑运动因此,这些岩石在深处可能会产生不稳定的地震滑动。皂苷含量高的CDZ凿在所有实验中都很弱(mu = 0.09-0.17)且速度增强,在温度高于150摄氏度时mu减小。SDZ的行为介于CDZ和围岩之间mu < 0.2,并且不会随温度变化。尽管皂石在大于3 km的深度处可能不稳定,但是在高温下用摩擦类似的矿物滑石和富含Mg的亚氯酸盐代替皂石可能会降低低强度和稳定滑移的范围,直至震源底部。区。由Elsevier Ltd.发布

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