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Connecting the Yakima fold and thrust belt to active faults in the Puget Lowland, Washington

机译:将亚基马褶皱和逆冲带连接到华盛顿普吉低地的活动断层

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High‐resolution aeromagnetic surveys of the Cascade Range and Yakima fold and thrust belt (YFTB), Washington, provide insights on tectonic connections between forearc and back‐arc regions of the Cascadia convergent margin. Magnetic surveys were measured at a nominal altitude of 250 m above terrain and along flight lines spaced 400 m apart. Upper crustal rocks in this region have diverse magnetic properties, ranging from highly magnetic rocks of the Miocene Columbia River Basalt Group to weakly magnetic sedimentary rocks of various ages. These distinctive magnetic properties permit mapping of important faults and folds from exposures to covered areas. Magnetic lineaments correspond with mapped Quaternary faults and with scarps identified in lidar (light detection and ranging) topographic data and aerial photography. A two‐dimensional model of the northwest striking Umtanum Ridge fault zone, based on magnetic and gravity data and constrained by geologic mapping and three deep wells, suggests that thrust faults extend through the Tertiary section and into underlying pre‐Tertiary basement. Excavation of two trenches across a prominent scarp at the base of Umtanum Ridge uncovered evidence for bending moment faulting possibly caused by a blind thrust. Using aeromagnetic, gravity, and paleoseismic evidence, we postulate possible tectonic connections between the YFTB in eastern Washington and active faults of the Puget Lowland. We suggest that faults and folds of Umtanum Ridge extend northwestward through the Cascade Range and merge with the Southern Whidbey Island and Seattle faults near Snoqualmie Pass 35 km east of Seattle. Recent earthquakes (M_W ≤ 5.3) suggest that this confluence of faults may be seismically active today.
机译:华盛顿的喀斯喀特山脉和亚基马褶皱和逆冲带(YFTB)的高分辨率航空磁学调查提供了关于卡斯卡迪亚会聚边缘的前弧区和后弧区之间的构造联系的见解。磁场测量是在海拔250 m的名义高度和沿相距400 m的飞行线进行的。该地区的上地壳岩石具有多种磁性,从中新世哥伦比亚河玄武岩群的高磁性岩石到不同年龄的弱磁性沉积岩石。这些独特的磁性能允许绘制重要的断层和从暴露到覆盖区域的褶皱。磁性线与映射的第四纪断层相对应,并与激光雷达(光检测和测距)地形数据和航拍中识别出的斜线相对应。基于磁性和重力数据并受地质制图和三个深井约束的西北走向的Umtanum Ridge断层带的二维模型表明,逆冲断层延伸穿过第三纪段并进入第三纪前地层。在Umtanum Ridge底部一条突出的陡坡上开挖两个沟槽,发现了可能由盲目推力引起的弯矩断层的证据。利用航磁,重力和古地震证据,我们推测华盛顿东部YFTB与普吉特低地活动断裂之间可能存在的构造联系。我们建议,Umtanum山脊的断层和褶皱向西北延伸,经过喀斯喀特山脉,并与南部惠德比岛和西雅图断层(在西雅图以东35公里处的Snoqualmie Pass附近)合并。最近的地震(M_W≤5.3)表明,断层的汇合今天可能在地震中活跃。

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