New northwest Pacific radiolarian data as a tool to estimate past sea surface and intermediate water temperatures

K. Matsuzaki, T. Itaki
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引用次数: 30

Abstract

A new radiolarian data set for transfer function estimates of past sea surface temperature (SST) and intermediate water temperature was developed in this study for the northwestern Pacific Ocean covering a region from 1° to 50°N and 120° to 167°E. We analyzed 87 sediments surface samples, selected 30 species and/or species group found in shallow water for estimating past summer SST and 17 species and/or species group found in the intermediate water for estimating past intermediate water temperature. Since the intermediate water temperature changes greatly between 200 and 500 m, our estimates provide values at 500 m because temperatures are relatively stable between 500 and 1000 m. In this context, we estimated past summer SST and intermediate water (at ~500 m) temperature within an error margin of 0.9 and 1.2°C, respectively. A test of the accuracy of our transfer functions, conducted on core samples provided by IODP Expedition 346 Site U1429 in the northern East China Sea, showed that the reconstructed summer SSTs fluctuated between 17.2 and 26.5°C in selected late Pleistocene sequences. These temperatures corresponded to modern winter and summer SST, respectively, which highlights the ability of our new database to accurately reconstruct summer SST. The reconstructed intermediate water temperature fluctuates between 3 and 8°C, which corresponds to the observed temperature range at depths of ~500 m at high and midlatitudes, respectively.
新西北太平洋放射虫资料作为估计过去海面和中间水温的工具
本文建立了一个新的辐射虫数据集,用于估算西北太平洋1°~ 50°N和120°~ 167°E范围内的过去海表温度和中间水温的传递函数。我们分析了87个表层沉积物样本,选择了30个浅水物种和/或物种组来估算过去夏季海温,选择了17个中间水域物种和/或物种组来估算过去中间水温。由于中间水温在200至500米之间变化很大,我们的估计提供500米的值,因为500至1000米之间的温度相对稳定。在此背景下,我们对过去夏季海温和中间水(~500 m)温度的估计误差分别为0.9°C和1.2°C。通过对东海北部IODP考察队346站点U1429提供的岩心样品进行的传递函数的准确性测试表明,在选定的晚更新世序列中,重建的夏季海温在17.2 ~ 26.5℃之间波动。这些温度分别对应现代冬季和夏季海温,这突出了我们的新数据库准确重建夏季海温的能力。重建的中间水温在3 ~ 8°C之间波动,对应于高纬度和中纬度~500 m深度的观测温度范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Paleoceanography
Paleoceanography 地学-地球科学综合
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6-12 weeks
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