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Late Pleistocene - Holocene ruptures of the Lima Reservoir fault, SW Montana

机译:晚更新世-蒙大拿州利马水库断层的全新世破裂

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Active tectonics within the northern Basin and Range province provide a natural laboratory for the study of normal fault growth, linkage, and interaction. Here, we present new geologic mapping and morphologic fault-scarp modeling within the Centennial Valley, Montana to characterize Pleistocene -Holocene ruptures of the young and active Lima Reservoir fault. Geologic relationships and rupture ages indicate Middle Pleistocene activity on the Henry Gulch (>50 ka and 23-10 ka), Trail Creek (>43 ka and ~13 ka), and reservoir (~23 ka) segments. Offset Quaternary deposits also record Holocene rupture of the reservoir segment (~8 ka), but unfaulted modern streams show that no segments of the Lima Reservoir fault have experienced a large earthquake in at least several millennia. The clustered pattern of rupture ages on the Lima Reservoir fault segments suggests a seismogenic linkage though segment length and spacing make a physical connection at depth unlikely. Trail Creek and reservoir segment slip rates were non-steady and appear to be increasing. The fault helps accommodate differential horizontal surface velocity measured by GPS geodesy across the boundary between the northern Basin and Range province and the Snake River Plain.
机译:北部盆地和Range省内的活跃构造为研究正常断层的生长,联系和相互作用提供了自然实验室。在这里,我们介绍了蒙大拿州百年山谷内的新地质图和形态断层—carp裂模型,以表征年轻活跃的利马水库断层的更新世-全新世破裂。地质关系和破裂年龄表明,亨利谷地(> 50 ka和23-10 ka),特雷克里克(> 43 ka和〜13 ka)和储层(〜23 ka)上的中更新世活动。偏移的第四纪沉积物也记录了储层的全新世破裂(〜8 ka),但是未断裂的现代河流表明,至少在几千年前,利马水库断层的任何部分都没有经历过大地震。利马水库断层段的破裂年龄的聚类模式表明,虽然段的长度和间距使得在深度上的物理连接不太可能,但仍存在地震成因的联系。特雷克里克和水库段的滑移率不稳定,并且似乎正在增加。该断层有助于适应由GPS大地测量法测量的北部盆地和Range省与Snake河平原之间边界的水平面速度差。

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