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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >The anatomy of interglacial sea levels: The relationship between sea levels and ice volumes during the Last Interglacial
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The anatomy of interglacial sea levels: The relationship between sea levels and ice volumes during the Last Interglacial

机译:冰间期海平面的解剖:最后一次冰间期海平面与冰量之间的关系

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The elevations and chronology of interglacial shorelines and other sea-level indicators provide information on ice volumes for these earlier periods compared with today. But, as for the Holocene, the relationship between sea levels and ice volumes for earlier interglacials is not simple because of the planet's deformational, gravitational and rotational response to changes in ice-water loads (glacio-hydro isostasy). In particular, the pattern of global sea level for a particular interglacial will be a function of the earth and ocean response to ice loads applied before, during and after the interglacial in question. This paper examines the role of glacio-hydro isostasy during these glacial cycles to make three key points. The first is to demonstrate why interglacial sea levels cannot be interpreted directly in terms of ice volume. The second is to illustrate the spatial variability that can be expected in interglacial sea levels because of the Earth's isostatic response to changing ice and water loads and to demonstrate why observations from different localities should not be combined into a single sea-level function without first correcting for differential isostatic effects. The third addresses the question whether, in the absence of perfect knowledge of the ice sheets and earth rheology, inferences can be made about ice volumes during an interglacial. We conclude that if these isostatic factors are ignored, interpretations of interglacial sea levels can lead to serious errors in the inferences about ice volumes during the interglacials.
机译:与今天相比,冰川间海岸线的高程和时间顺序以及其他海平面指示器可提供这些早期时期的冰量信息。但是,就全新世而言,早期冰期间冰期的海平面与冰量之间的关系并不简单,因为行星对冰水负荷的变化(冰水等静压)产生了变形,引力和旋转响应。特别是,特定冰川间层的全球海平面模式将取决于地球和海洋对在该冰川间层之前,之中和之后施加的冰负荷的响应。本文考察了冰川水等位基因在这些冰川循环中的作用,提出了三个关键点。首先是要说明为什么不能直接根据冰量来解释冰间海平面。第二个是说明由于地球对冰和水负荷变化的等静响应,在冰川间海平面中可以预期的空间变异性,并说明为什么不先校正就不应将来自不同地区的观测结果合并为一个海平面函数的原因用于不同的等静压效果。第三个问题是在缺乏对冰盖和地球流变学的全面了解的情况下,是否可以推断出间冰期的冰量。我们得出的结论是,如果忽略这些等静压因素,则对冰间海平面的解释会导致在冰间冰期的冰量推论中出现严重错误。

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