Hydroclimate Variability in the Equatorial Western Indian Ocean for the Last 250,000 Years

IF 3.2 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Paleoceanography and Paleoclimatology Pub Date : 2023-01-21 DOI:10.1029/2022PA004530
G. Windler, J. Tierney, P. deMenocal
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Abstract

Indian Ocean sea surface temperatures impact precipitation across the basin through coupled ocean‐atmosphere responses to changes in climate. To understand the hydroclimate response over the western Indian Ocean and equatorial east Africa to different forcing mechanisms, we present four new proxy reconstructions from core VM19‐193 (2.98°N, 51.47°E) that span the last 250 ky. Sub‐surface water temperatures (Sub‐T; TEX86) show strong precessional (23 ky) variability that is primarily influenced by maximum incoming solar radiation (insolation) during the Northern Hemisphere spring season, likely indicating that local insolation dominates the upper water column at this tropical location over time. Leaf waxes, on the other hand, reflect two different precipitation signals: δ13Cwax (in phase with boreal fall insolation) is likely reflecting vegetation changes in response to local rainfall over east Africa, whereas δDprecip (primarily driven by boreal summer insolation) represents changes in regional circulation associated with the summer monsoon. Glacial‐interglacial changes in ocean temperatures support glacial shelf exposure over the Maritime Continent in the eastern Indian Ocean and the subsequent weakening of the Indian Walker Circulation as a mechanism driving 100 ky climate variability across the tropical Indo‐Pacific. Additionally, the 100 ky spectral power in δDprecip supports a basin‐wide weakening of summer monsoon circulation in response to glacial climates. Overall, the proxy records from VM19‐193 indicate that both precession and glacial‐interglacial cycles exert control over hydroclimate at this tropical location.
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近25万年来赤道西印度洋的水文气候变化
印度洋海表温度通过海洋-大气对气候变化的耦合响应影响整个盆地的降水。为了了解西印度洋和赤道东非对不同强迫机制的水文气候响应,我们利用VM19‐193(2.98°N, 51.47°E)核心的四个新的代理重建数据,跨度近250天。亚地表水温(Sub - T);TEX86)显示出强烈的岁差(23天)变率,主要受北半球春季最大入射太阳辐射(日照)的影响,这可能表明,随着时间的推移,该热带地区的上层水柱的日照占主导地位。另一方面,叶蜡反映了两种不同的降水信号:δ13Cwax(与北方秋季日照相一致)可能反映了东非当地降雨对植被变化的响应,而δDprecip(主要由北方夏季日照驱动)代表了与夏季风相关的区域环流变化。海洋温度的冰期-间冰期变化支持东印度洋海洋大陆上的冰架暴露,以及随后印度沃克环流的减弱作为驱动热带印度洋-太平洋100天气候变率的机制。此外,δ dprecipitation的100天谱功率支持整个盆地夏季风环流因冰川气候而减弱。总体而言,VM19‐193的代用记录表明,进动和冰期—间冰期旋回对该热带地区的水文气候起着控制作用。
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来源期刊
Paleoceanography and Paleoclimatology
Paleoceanography and Paleoclimatology Earth and Planetary Sciences-Atmospheric Science
CiteScore
6.20
自引率
11.40%
发文量
107
期刊介绍: Paleoceanography and Paleoclimatology (PALO) publishes papers dealing with records of past environments, biota and climate. Understanding of the Earth system as it was in the past requires the employment of a wide range of approaches including marine and lacustrine sedimentology and speleothems; ice sheet formation and flow; stable isotope, trace element, and organic geochemistry; paleontology and molecular paleontology; evolutionary processes; mineralization in organisms; understanding tree-ring formation; seismic stratigraphy; physical, chemical, and biological oceanography; geochemical, climate and earth system modeling, and many others. The scope of this journal is regional to global, rather than local, and includes studies of any geologic age (Precambrian to Quaternary, including modern analogs). Within this framework, papers on the following topics are to be included: chronology, stratigraphy (where relevant to correlation of paleoceanographic events), paleoreconstructions, paleoceanographic modeling, paleocirculation (deep, intermediate, and shallow), paleoclimatology (e.g., paleowinds and cryosphere history), global sediment and geochemical cycles, anoxia, sea level changes and effects, relations between biotic evolution and paleoceanography, biotic crises, paleobiology (e.g., ecology of “microfossils” used in paleoceanography), techniques and approaches in paleoceanographic inferences, and modern paleoceanographic analogs, and quantitative and integrative analysis of coupled ocean-atmosphere-biosphere processes. Paleoceanographic and Paleoclimate studies enable us to use the past in order to gain information on possible future climatic and biotic developments: the past is the key to the future, just as much and maybe more than the present is the key to the past.
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