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首页> 外文期刊>The holocene >Breaching of Mustang Island in response to the 8.2 ka sea-level event and impact on Corpus Christi Bay, Gulf of Mexico: Implications for future coastal change
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Breaching of Mustang Island in response to the 8.2 ka sea-level event and impact on Corpus Christi Bay, Gulf of Mexico: Implications for future coastal change

机译:为响应8.2 ka海平面事件而对野马岛的破坏及其对墨西哥湾科珀斯克里斯蒂湾的影响:对未来沿海变化的影响

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The results from an investigation of the coupled Mustang Island-Corpus Christi Bay complex, Gulf of Mexico, shows that the island was eliminated as an effective salinity barrier between 8.86 and 8.17 ka. This event is recorded by a 5-fold increase in dinoflagellate cysts within Corpus Christi Bay. During this time, the bay-head delta shifted 15 km landward and oyster reefs within the bay died off. Our age model indicates that this event most likely resulted from the most rapid period of eustatic rise of the Holocene, which peaked at 8.18-8.31 ka. This event is attributed to late-stage ice sheet disintegration, particularly in North America, by the rapid draining of Lake Agassiz-Ojibway. Local glacial-isostatic factors resulted in a sea-level rise of only 0.2-0.56 m in the western Gulf of Mexico, which was less than needed to submerge the barrier. Rather, it was the marked nature of this sea-level rise that led to the virtual destruction of Mustang Island as an effective salinity barrier. These results provide an analog for predicting coastal morphodynamic response to accelerated sea-level rise and emphasize the need for better understanding of barrier response to sea-level rise and developing improved numerical models for predicting future changes to coastal barrier shorelines.
机译:对墨西哥湾野马岛-科普斯克里斯蒂湾联合体的调查结果表明,该岛已被取消,成为有效盐分屏障,介于8.86和8.17 ka之间。该事件由科珀斯克里斯蒂湾内的鞭毛囊肿增加了5倍来记录。在此期间,湾头三角洲向内移动了15公里,湾内的牡蛎礁死亡。我们的年龄模型表明,这一事件最有可能是由于全新世的最快速上升期造成的,峰值达到8.18-8.31 ka。此事件归因于后期冰盖的崩解,尤其是在北美,由于阿加西兹-奥吉布韦湖的快速排水。局部的冰川动静因素导致墨西哥湾西部的海平面仅上升0.2-0.56 m,这不足以淹没屏障。相反,正是这种海平面上升的显着性质导致了对野马岛的虚拟破坏,将其作为有效的盐分屏障。这些结果为预测沿海地区对加速海平面上升的形态动力响应提供了一个模拟,并强调了需要更好地理解屏障对海平面上升的响应,并需要开发改进的数值模型来预测未来对沿海屏障海岸线的变化。

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