奥卡诺根裂片隧道通道和冰川下洪水进入摩西库利,美国西北部通道式痂地

Geology Pub Date : 2024-03-28 DOI:10.1130/g52005.1
Joel Gombiner, J. Lesemann
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摘要

来自米苏拉冰川湖的迸发洪水在很大程度上解释了美国西北部华盛顿州玄武岩沟道系统--沟道痂地(Channeled Scabland)的侵蚀。然而,由于摩西峡谷的地形与洪水路线相隔离,要解释米苏拉洪水进入摩西峡谷的路线非常困难。为了明确洪水进入摩西库利的路径,我们绘制了连接摩西库利的径向-吻合网络渠道图。水道由主要由玄武岩侵蚀而成的溪谷状地貌组成。河道爬上不利的斜坡并穿过分水岭,河道网络中布满了陡崖和退缩冰碛。这些河道几何形状和冰川地貌关联表明这是一个隧道河道网络。巨大的河道尺寸和网络吻合表明是在冰川下洪水中形成的。该网络与摩西库利河相连,其横截面积足以输送特大洪水,这表明除了可能的米苏拉河分流洪水之外,冰川下洪水可能也是摩西库利河融水的重要来源。
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Okanogan lobe tunnel channels and subglacial floods into Moses Coulee, Channeled Scabland, northwestern United States
Outburst floods from glacial Lake Missoula largely explain erosion of the Channeled Scabland, a system of overfit, basaltic channels in Washington, northwestern United States. However, it is challenging to explain Missoula flood routing into Moses Coulee due to its topographic isolation from flood routes. To clarify flood pathways into Moses Coulee, we mapped channels that delineate a radial-anastomosing network connecting to Moses Coulee. Channels consist of coulee-like features eroded mainly in basalt. Channels climb adverse slopes and cross divides, and the network is draped with eskers and recessional moraines. These channel geometries and glacial landform associations suggest a tunnel channel network. Large channel dimensions and network anastomosis indicate formation in subglacial floods. The network connects to Moses Coulee with sufficient cross-sectional area to convey megafloods, hinting that subglacial floods may have been a significant source of Moses Coulee meltwater, in addition to possible diverted Missoula floods.
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