首页> 外文期刊>Journal of quaternary science: JQS >Lateglacial and early Holocene summer temperatures in the southern Swiss Alps reconstructed using fossil chironomids
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Lateglacial and early Holocene summer temperatures in the southern Swiss Alps reconstructed using fossil chironomids

机译:使用化石天文学家重建的瑞士南部阿尔卑斯山的晚冰川期和全新世早期夏季温度

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We present a Lateglacial and early Holocene chironomid-based July air temperature reconstruction from Foppe (1470m a.s.l.) in the Swiss Southern Alps. Our analysis suggests that chironomid assemblages have responded to major and minor climatic fluctuations during the past 17 000 years, such as the Oldest Dryas, the Younger Dryas and the B?lling/Aller?d events in the Lateglacial and the Preboreal Oscillation at the beginning of the Holocene. Quantitative July air temperature estimates were produced by applying a combined Norwegian and Swiss temperature inference model consisting of 274 lakes to the fossil chironomid assemblages. The Foppe record infers average July air temperatures of ca. 9.9°C during the Oldest Dryas, 12.2°C during most of the B?lling/Aller?d and 11.1°C for the Younger Dryas. Mean July air temperatures during the Preboreal were 14°C. Major temperature changes were observed at the Oldest Dryas/B?lling (+2.7°C), the Aller?d/Younger Dryas (-2°C) and the Younger Dryas/Holocene transitions (+3.9°C). The temperature reconstruction also shows centennial-scale coolings of ca. 0.8-1.4°C, which may be synchronous with the Aegelsee (Greenland Interstadial 1d) and the Preboreal Oscillations. A comparison of our results with other palaeoclimate records suggests noticeable temperature gradients across the Alps during the Lateglacial and early Holocene.
机译:我们介绍了瑞士南部阿尔卑斯山的Foppe(1470m a.s.l.)晚冰期和全新世早期基于奇异子的7月气温重建。我们的分析表明,在过去的17000年中,手足动物组合对主要和次要的气候波动做出了响应,例如最晚的Dry树,较早的树and以及晚冰期和早波涛涛涛发生的Billing / Aller?d事件。全新世。通过将由274个湖泊组成的挪威和瑞士的温度推断组合模型应用于化石天体组合,得出了7月的定量气温。 Foppe记录推断7月份的平均气温为。在最古老的树桩中,温度为9.9°C,在大多数装填区和Aller?d中,温度为12.2°C,对于较年轻的树Dry,则为11.1°C。 7月的平均气温为14°C。在最古老的树as /填充区(+ 2.7°C),Aller?d /年轻的树Dry(-2°C)和年轻的树as /全新世转变(+ 3.9°C)处观察到主要温度变化。温度重建还显示了大约100年的百年尺度降温。 0.8-1.4°C,可能与Aegelsee(格陵兰Interstadial 1d)和原波振荡同步。我们的结果与其他古气候记录的比较表明,晚冰期和全新世早期整个阿尔卑斯山的温度梯度明显。

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