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Model evidence for a seasonal bias in Antarctic ice cores

机译:南极冰芯季节性偏差的模型证据

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摘要

Much of the global annual mean temperature change over Quaternary glacial cycles can be attributed to slow ice sheet and greenhouse gas feedbacks, but analysis of the short-term response to orbital forcings has the potential to reveal key relationships in the climate system. In particular, obliquity and precession both produce highly seasonal temperature responses at high latitudes. Here, idealized single-forcing model experiments are used to quantify Earth’s response to obliquity, precession, CO2, and ice sheets, and a linear reconstruction methodology is used to compare these responses to long proxy records around the globe. This comparison reveals mismatches between the annual mean response to obliquity and precession in models versus the signals within Antarctic ice cores. Weighting the model-based reconstruction toward austral winter or spring reduces these discrepancies, providing evidence for a seasonal bias in ice cores.
机译:第四纪冰川周期上全球大部分的年平均温度变化可以归因于冰盖和温室气体的缓慢反馈,但是对轨道强迫的短期响应的分析有可能揭示气候系统中的关键关系。特别是,倾斜和岁差都会在高纬度地区产生高度的季节性温度响应。在这里,理想化的单强迫模型实验用于量化地球对倾角,岁差,CO2和冰盖的响应,而线性重建方法则用于将这些响应与全球范围内的长期代理记录进行比较。这种比较揭示了模型中对倾斜和岁差的年平均响应与南极冰芯内的信号之间的不匹配。对基于模型的重建进行加权以偏重冬季或春季,可以减少这些差异,从而为冰芯的季节性偏差提供证据。

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