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Interplay between regional uplift and glacio-eustasy in the Crotone Basin (Calabria, southern Italy) since 0.45 Ma: A review

机译:自0.45 Ma以来在克罗托尼盆地(意大利南部卡拉贝里亚)的区域隆升与冰川-欧共体之间的相互作用:综述

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During the last 0.45 Ma, the Crotone Basin, a forearc basin located on the Ionian side of Calabria, southern Italy, experienced a phase of uplift that persists today. The transition from subsidence to uplift occurred close to the Marine Isotope Stage (MIS) 11 (ca. 0.4 Ma). The subsequent progressive emergence of the area was punctuated by several marine transgressions linked to high-frequency, high-magnitude glacio-eustatic changes, which are recorded as coastal terraces. These high-frequency sequences show a variable stacking pattern due to the interplay between glacio-eustasy, uplift and local physiography. In particular, a progressive SE-ward migration of the shoreline is documented in the study area since MIS 11. This trend was enhanced during the MIS 5.5 to MIS 2 time interval, due to the combined effect of uplift and lowering glacio-eustatic sea level until the Last Glacial Maximum. Moreover, the regional uplift also led to a physiographic change from relatively low-gradient to high-gradient settings between MIS 7.1 and MIS 5.5. A comparison between the late Quaternary geological record of the Crotone Basin and that of other basins is crucial to improve the present knowledge on past sea levels related to MISs. This ultimately will help to better understand the Holocene sea-level history and the human contribution to sea-level change, in order to predict future scenarios. (C) 2016 Elsevier B.V. All rights reserved.
机译:在最后的0.45 Ma时间内,位于意大利南部卡拉布里亚爱奥尼亚一侧的克洛托盆地(Crotone Basin)经历了一个持续到今天的隆升阶段。从沉降到隆升的转变发生在海洋同位素阶段(MIS)11附近(约0.4 Ma)。随后该地区逐渐出现,被几次与高频率,高幅度冰川-欧共体变化有关的海侵所打断,这些沿海海平面被记录为沿海阶地。这些高频率序列由于冰川动态,隆升和局部生理学之间的相互作用而显示出可变的叠加模式。特别是,自MIS 11以来,研究区域记录了海岸线向东南方向的逐步迁移。由于MIS 5.5上升至MIS 2的时间间隔,这种趋势得到了增强,这是由于隆升和冰川消融海平面降低的共同作用直到最后一次冰河最大值。此外,区域隆升还导致MIS 7.1和M​​IS 5.5之间的地貌从相对较低的渐变变为较高的渐变。在克罗托内盆地和其他盆地的第四纪晚期地质记录之间进行比较,对于提高目前有关MIS的过去海平面的知识至关重要。这最终将有助于更好地了解全新世海平面的历史以及人类对海平面变化的贡献,从而预测未来的情景。 (C)2016 Elsevier B.V.保留所有权利。

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