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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Sedimentary architecture of the southern basin of Lake of the Woods, Minnesota and its relation to Lake Agassiz history and Holocene environmental change
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Sedimentary architecture of the southern basin of Lake of the Woods, Minnesota and its relation to Lake Agassiz history and Holocene environmental change

机译:明尼苏达湖南部盆地的沉积建筑及其与Agassiz历史和全新世环境变革的关系

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摘要

Lake of the Woods (LOTW) is a large, complex lake basin once occupied by glacial Lake Agassiz. High-resolution seismic-reflection profiles and cores in the shallow, open southern basin of LOTW reveal a sedimentary architecture comprising four lacustrine units separated by three low-stand unconformities. These units represent several phases of Lake Agassiz and its changing configuration. One unconformity marks the Moorhead low phase and another marks the separation of LOTW from Lake Agassiz, perhaps similar to 10 cal ka BP, as the level of the latter fell, but before final drainage of Agassiz. Initially, the separate Holocene lake in the southern basin was broad and shallow, sometimes marshy or dry. Shortly after 8 cal ka BP, the southern basin dried up completely, despite the progressive rise of the northern outlet of the lake due to differential isostatic uplift. The resulting hiatus is related to the well-documented mid-Holocene arid interval in central North America. A return to wetter conditions in the late Holocene caused the southern basin of LOTW to refill since about 3800 cal yr BP. Late Holocene sediments have accumulated slightly asymmetrically in the basin, possible due to continued southward transgression of the lake as a result of isostatic tilting.
机译:湖的湖(Lotw)是一家大型复杂的湖泊盆地,曾被冰川湖乔西斯占据。 Lotw的浅层南部南部南部浅层岩石岩石和核心,揭示了一种沉积架构,包括四个宽度的宽度单位,由三个低架不一致。这些单位代表了伊斯坦湖的几个阶段及其变化的配置。一个无关的标志着Moorhead低阶段,另一个标志着从苏曲湖的Lotw分离,也许类似于10只Cal Ka BP,因为后者的水平下降,但在agassiz的最终排水之前。最初,南部盆地的单独全新羊湖是宽阔的,有时是沼泽或干燥的。 8 Cal Ka BP后不久,南部盆地完全枯竭,尽管湖泊由于差动等静压隆起而北部出口的逐步升高。由此产生的中断与北美洲中部内全新生干旱区间有关。返回全新世的潮湿条件导致Lotw的南部盆地以重新填充,自约3800 Cal Yr BP。由于等静电倾斜导致湖泊持续南后,晚全新世沉积物在盆地中略微不对称地积累。

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