首页> 外文期刊>Geological Society of America Bulletin >Stratigraphic architecture, magnetostratigraphy, and incised-valley systems of the Pliocene-Pleistocene collisional marine foreland basin of Taiwan
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Stratigraphic architecture, magnetostratigraphy, and incised-valley systems of the Pliocene-Pleistocene collisional marine foreland basin of Taiwan

机译:台湾上新世-更新世海相前陆盆地的地层建筑,地磁地层和切谷系统

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Lithofacies analysis, magnetostratigraphy, and seismic profiles of Pliocene-Pleis-tocene foreland basin deposits of Taiwan provide a framework to evaluate the stratigraphic development of a collisional marine foreland basin. We have recognized several scales of stratigraphic packages and unconformities in deposits of the Taiwan foreland basin. Small-scale(20 to 150 m thick) stratigraphic sequences contain upward-shallowing, marine lithofacies successions that are bracketed by thin coquina sandstones. We interpret the small-scale stratigraphic packages as "parasequences" in the traditional sequence stratigraphy model. The thin coquina sandstones representing marine-flooding intervals. The average duration of individual small-scale packages was in the range of 37.5 k.y., on the basis of our magnetostratigraphy. These sequences are interpreted as the product of eustatic sealevel change possibly related to the orbital time series of obliquity. Intermediate-scale stratigraphic sequences are 150 to 1000 m thick and are bounded by unconformities that are well exposed in outcrop and can be clearly identified in seismic sections. The unconformity surfaces have several hundred meters of relief and represent periods of major fluvial valley incision in the foreland basin. One of the unconformities is locally an angular one that we interpret as representing a growth structure that formed during structural uplift of the proximal margin of the foreland basin at ca. 1.25 Ma. Across this angular unconformity, there were marked increases in rates of sediment accumulation and tectonic subsidence in the foreland basin. Other major unconformities that bound intermediate-scale stratigraphic sequences are high-relief disconformities. These unconformities may be the product of eustatic changes, because there has been little change in rates of sediment accumulation and tectonic subsidence across these unconformities. The duration of individual, intermediate-scale packages ranges from approx100000 to 700000 yr, on the basis of magnetostratigraphy and biostratigraphy. We interpret the intermediate-scale sequences ad "sequences" in the traditional sequence stratigraphy model.
机译:台湾上新世-上新统-前新统前陆盆地沉积的岩相分析,地层学和地震剖面提供了一个评价海相前陆碰撞盆地地层发育的框架。我们已经认识到台湾前陆盆地沉积物中的地层包裹和不整合面有多种尺度。小规模(20至150 m厚)地层层序由浅层的海相岩相序列构成,并由薄的Coquina砂岩包围。我们将小规模地层组合解释为传统层序地层学模型中的“副层序”。稀薄的Coquina砂岩代表着海洋驱替层段。根据我们的地层学,单个小型包装的平均持续时间为37.5 k.y.。这些序列被解释为可能与倾斜度的轨道时间序列有关的海平面变化的产物。中等规模的地层层序为150至1000 m厚,并以不整合面为边界,这些不整合面在露头中暴露得很好,并且可以在地震剖面中清楚地识别出来。不整合面具有几百米的浮雕,代表前陆盆地中主要河谷切开的时期。不整合面中的一个是局部的不整合面,我们将其解释为代表在前陆盆地近缘的结构隆升在约200℃时形成的生长结构。 1.25毫安在这个角度不整合面上,前陆盆地的沉积物堆积和构造沉降速率显着增加。限制中尺度地层层序的其他主要不整合面是高浮雕不整合面。这些不整合面可能是欢乐变化的产物,因为在这些不整合面中,沉积物堆积和构造沉降的速率几乎没有变化。根据地磁地层学和生物地层学的基础,单个中等规模的包装的持续时间范围从大约100000到700000 yr。我们在传统层序地层学模型中解释中等规模层序的“序列”。

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