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根据钻孔温度重建的过去五个世纪的温度趋势。

Temperature trends over the past five centuries reconstructed from borehole temperatures.

作者信息

Huang S, Pollack HN, Shen PY

机构信息

Department of Geological Sciences, The University of Michigan, Ann Arbor 48109-1063, USA.

出版信息

Nature. 2000 Feb 17;403(6771):756-8. doi: 10.1038/35001556.

Abstract

For an accurate assessment of the relative roles of natural variability and anthropogenic influence in the Earth's climate, reconstructions of past temperatures from the pre-industrial as well as the industrial period are essential. But instrumental records are typically available for no more than the past 150 years. Therefore reconstructions of pre-industrial climate rely principally on traditional climate proxy records, each with particular strengths and limitations in representing climatic variability. Subsurface temperatures comprise an independent archive of past surface temperature changes that is complementary to both the instrumental record and the climate proxies. Here we use present-day temperatures in 616 boreholes from all continents except Antarctica to reconstruct century-long trends in temperatures over the past 500 years at global, hemispheric and continental scales. The results confirm the unusual warming of the twentieth century revealed by the instrumental record, but suggest that the cumulative change over the past five centuries amounts to about 1 K, exceeding recent estimates from conventional climate proxies. The strength of temperature reconstructions from boreholes lies in the detection of long-term trends, complementary to conventional climate proxies, but to obtain a complete picture of past warming, the differences between the approaches need to be investigated in detail.

摘要

为了准确评估自然变率和人为影响在地球气候中所起的相对作用,重建工业化前以及工业化时期的过去温度至关重要。但仪器记录通常只能追溯到过去150年。因此,工业化前气候的重建主要依赖于传统的气候代用记录,每种代用记录在反映气候变率方面都有其独特的优势和局限性。地下温度构成了过去地表温度变化的一个独立档案库,它与仪器记录和气候代用指标相互补充。在这里,我们利用除南极洲以外各大洲616个钻孔的现今温度,重建了过去500年全球、半球和大陆尺度上长达一个世纪的温度趋势。结果证实了仪器记录所揭示的20世纪异常变暖现象,但表明过去五个世纪的累积变化约为1K,超过了传统气候代用指标的近期估计值。钻孔温度重建的优势在于能够检测长期趋势,这与传统气候代用指标相互补充,但要全面了解过去的变暖情况,需要详细研究不同方法之间的差异。

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