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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 >Temperature signals in tree-ring oxygen isotope series from the northern slope of the Himalaya
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Temperature signals in tree-ring oxygen isotope series from the northern slope of the Himalaya

机译:从喜马拉雅北坡的树木氧同位素系列中的温度信号

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Oxygen isotope ratios (delta O-18) are the most commonly used parameters recorded in paleoclimate archives since they link different natural archives via the water cycle. Tree-ring delta O-18 (delta O-18(TR)) has been widely used for hydroclimate reconstructions in the Himalaya. However, few of them record temperature signals, which are dominant in Himalaya ice-core delta O-18. We hypothesize that the "precipitation amount effect" due to the South Asian Summer Monsoon (SASM) may overprint temperature signals in delta O-18(TR) series. The purpose of this study is to investigate whether temperature signals could be found in the delta O-18(TR) in locations where the influence of SASM is weak. We developed a 105-yr delta O-18(TR) chronology from the northern slope of the western Himalaya which greatly blocks the SASM. Our delta O-18(TR) clearly shows stronger correlations with temperature (dominant winter and weak summer) than summer precipitation signals. It also agrees well with summer soil moisture delta O-18 simulated by the global isotope model LMDZ4 (r = 0.72, 1979-2010). In LMDZ4, low winter temperature was found to increase winter snowfall and subsequent snow melt, and thus to increase the contribution of winter snowfall to soil moisture in summer at the expense of summer precipitation. Since winter snowfall is more depleted than summer precipitation, this leads to lower summer soil moisture delta O-18. The temperature signals found in our delta O-18(TR) series are consistent with those found in the Dasuopu ice-core delta O-18. This implies that delta O-18(TR) series from the southwest Tibetan Plateau (TP), with a weak monsoon, hold great potential to capture temperature signals. Climate interpretations of delta O-18 proxies in the Himalaya largely depend on the influence of seasonal water from the dominant atmosphere circulation systems of the westerlies or monsoon. The delta O-18 proxies from the monsoon-affected region have a higher potential for the reconstr
机译:氧同性能率比(Delta O-18)是古老气候档案中最常用的参数,因为它们通过水循环链接不同的自然档案。树戒指Delta O-18(Delta O-18(TR))已广泛用于喜马拉雅州的水准体重建。然而,其中很少有记录温度信号,在喜马拉雅冰核δO-18中占主导地位。我们假设由于南亚夏季季风(SASM)引起的“降水量效应”可以在Delta O-18(TR)系列中叠印温度信号。本研究的目的是研究是否可以在SASM的影响弱的位置中找到温度信号在Delta O-18(TR)中。我们开发了来自西部喜马拉雅北坡的105 yr Delta O-18(TR)年表,这极大地阻止了SASM。我们的Delta O-18(TR)显然与夏季降水信号的温度(优势冬季和疲软)明显表现出更强的相关性。它还符合由全球同位素模型LMDZ4(r = 0.72,1979-2010)模拟的夏季土壤湿度ΔO-18。在LMDZ4中,发现低冬季温度增加冬季降雪和随后的雪熔化,从而增加夏季夏季降水冬季降雪对土壤水分的贡献。由于冬季降雪比夏季降水更耗尽,因此这导致夏季土壤水分达到ΔO-18更低。我们的Delta O-18(TR)系列中发现的温度信号与Dasuopu冰核δO-18中的那些一致。这意味着Delta O-18(TR)系列来自西南藏高原(TP),具有弱季风,占据捕获温度信号的巨大潜力。 Himalaya的Delta O-18代理的气候解释主要取决于季节性水从威斯利亚或季风的主要气氛循环系统的影响。来自季风影响地区的三角洲O-18代理具有较高的侦查潜力

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