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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Interpreting ancient ice in a shallow ice core from the South Yamato (Antarctica) blue ice area using flow modeling and compositional matching to deep ice cores
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Interpreting ancient ice in a shallow ice core from the South Yamato (Antarctica) blue ice area using flow modeling and compositional matching to deep ice cores

机译:使用流模型和深层冰芯的成分匹配,解释南大和(南极洲)蓝色冰区浅层冰芯中的古代冰

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摘要

We explore methods of dating a 101 m ice core from a bare ice ablation area in the Yamato Mountains, Dronning Maud Land, East Antarctica. There are two unknowns, the age of the ice at the surface and the age spanned by the core. The ice crystal growth rate was used to estimate the age span of the core at about 5 kyr. CO2, CH4 and N2O data on the core were compared with well-dated records from deep cores, leading to two plausible matches, both within isotope stage C. Detailed comparison of high-resolution DEP records from this core and the Dome Fuji core support the 55–61 kyr BP fit best. Oxygen isotope values in the core were then used to constrain the source elevation of the snow in the core, and hence the velocities in a simple flow line model. We inverted the ice core surface age, age span and origin site and their confidence intervals in a sensitivity study of flow model parameter space. The flow line model predicts good matches to the core by reducing glacial flow rates to 70% of present-day, accumulation rates by 45% with 10% confidence intervals. The modeled surface age for the whole meteorite field yields maximum surface ages of about 90 kyr, which is consistent with known, but poorly constrained, tephra dating, meteorite terrestrial ages and the frequency of meteorite discoveries. This approach can be used quite generally to link deep ice cores to surface outcrops on blue ice fields.
机译:我们探索了在南极东部德龙宁莫德(Dronning Maud Land)大和山(Yamato Mountains)裸露冰消融区中101 m冰芯约会的方法。有两个未知数,即表面冰的年龄和岩心跨越的年龄。冰晶生长速率用于估计岩心的年龄,大约为5年。将岩心中的CO2,CH4和N2O数据与深岩心中的良好记录进行了比较,得出了在同位素C级内的两个合理的匹配结果。来自该岩心和Dome Fuji岩心的高分辨率DEP记录的详细比较支持了55-61岁的BP最合适。然后使用岩心中的氧同位素值来约束岩心中雪的源高度,从而限制简单流线模型中的速度。在流动模型参数空间的敏感性研究中,我们反转了冰芯表面的年龄,年龄跨度和起源地点及其置信区间。流线模型通过将冰川流率降低到目前的70%,将蓄积率降低到45%(置信区间为10%)来预测与岩心的良好匹配。整个陨石场的模拟地表年龄产生的最大地表年龄约为90 kyr,这与已知的但受约束程度有限的特菲拉测年,陨石地球年龄和陨石发现的频率一致。这种方法通常可用于将深冰芯连接到蓝色冰原上的地面露头。

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