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Southern Ocean contributions to the Eastern Equatorial Pacific heat content during the Holocene

机译:全新世期间南大洋对赤道东太平洋热量的贡献

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摘要

Temperature reconstructions from a shallow core (375 m) from the Peru Margin are used to test the influence of Subantarctic Mode Water (SAMW) on the eastern equatorial Pacific (EEP) thermostad and thus the effect of southern high latitude climate on interior ocean heat content (OHC). Temperature estimates, based on Mg/Ca measurements of planktonic and benthic foraminifera (Neogloboquadrina dutertrei and Uvigerina spp., respectively) show higher temperatures in the early Holocene, a cooling of similar to 2 degrees by 8 kyr B.P. and after relatively stable temperatures to the present. The temperature signal is similar in direction and timing to a rather robust Holocene climate signal from the southern high latitudes suggesting it originated there and was advected to the core site in the EEP. Based on the N. dutertrei and Uvigerina Mg/Ca temperature and delta C-13 records we conclude that SAMW acted as a conduit transporting the southern high latitude climate to the interior of the equatorial Pacific. We propose that the early Holocene warmth is related to a southward migration of the Subtropical Front, which enhanced the influence of warm subtropical water in the region of SAMW formation and was then transported to the EEP thermostad. The early Holocene warmth recorded in the EEP thermostad has a muted sea surface temperature expression indicating this mechanism is important for sequestering heat in the ocean interior. (C) 2015 Elsevier B.V. All rights reserved.
机译:利用来自秘鲁边界的浅层岩心(375 m)的温度重建来测试亚极模式水(SAMW)对赤道东太平洋(EEP)东部温度场的影响,以及南部高纬度气候对内部海洋热量含量的影响(OHC)。根据浮游和底栖有孔虫(分别为Neogloboquadrina dutertrei和Uvigerina spp。)的Mg / Ca测量得出的温度估计值表明,全新世早期的温度较高,到公元前8 kyr时降温约2度。并且在相对稳定的温度下到现在为止。该温度信号的方向和时间与来自南部高纬度的相当鲁棒的全新世气候信号相似,表明该信号起源于那里,并被平流到EEP的核心站点。根据杜特勒猪笼草和Uvigerina的Mg / Ca温度和δC-13记录,我们得出结论,SAMW充当了将南部高纬度气候输送到赤道太平洋内部的管道。我们认为,全新世早期的暖化与亚热带锋面的南移有关,这增强了亚热带暖水在SAMW形成区域的影响,然后被输送到EEP热田。 EEP温度场记录的全新世早期暖期具有减弱的海面温度表达,表明该机制对于隔离海洋内部的热量很重要。 (C)2015 Elsevier B.V.保留所有权利。

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