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Decadal-resolution record of winter monsoon intensity over the last two millennia from planktic foraminiferal assemblages in the northeastern Arabian Sea

机译:阿拉伯海东北部过去两千年来由板状有孔虫组成的冬季季风强度的年代际分辨率记录

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The Indian monsoon system is an important climate feature of the northern Indian Ocean. Small variations of the wind and precipitation patterns have fundamental influence on the societal, agricultural, and economic development of India and its neighboring countries. To understand current trends, sensitivity to forcing, or natural variation, records beyond the instrumental period are needed. However, high-resolution archives of past winter monsoon variability are scarce. One potential archive of such records are marine sediments deposited on the continental slope in the NE Arabian Sea, an area where present-day conditions are dominated by the winter monsoon. In this region, winter monsoon conditions lead to distinctive changes in surface water properties, affecting marine plankton communities that are deposited in the sediment. Using planktic foraminifera as a sensitive and well-preserved plankton group, we first characterize the response of their species distribution on environmental gradients from a dataset of surface sediment samples in the tropical and sub-tropical Indian Ocean. Transfer functions for quantitative paleoenvironmental reconstructions were applied to a decadal-scale record of assemblage counts from the Pakistan Margin spanning the last 2000years. The reconstructed temperature record reveals an intensification of winter monsoon intensity near the year 100 CE. Prior to this transition, winter temperatures were >1.5 degrees C warmer than today. Conditions similar to the present seem to have established after 450 CE, interrupted by a singular event near 950 CE with warmer temperatures and accordingly weak winter monsoon. Frequency analysis revealed significant 75-, 40-, and 37-year cycles, which are known from decadal- to centennial-scale resolution records of Indian summer monsoon variability and interpreted as solar irradiance forcing. Our first independent record of Indian winter monsoon activity confirms that winter and summer monsoons were modulated on the same frequency bands and thus indicates that both monsoon systems are likely controlled by the same driving force.
机译:印度季风系统是北印度洋的重要气候特征。风和降水模式的微小变化对印度及其邻国的社会,农业和经济发展具有根本影响。为了了解当前趋势,对强迫的敏感度或自然变化,需要超出工具期的记录。但是,缺乏过去冬季季风变化的高分辨率档案。这种记录的一个潜在档案是沉积在东北阿拉伯海大陆坡上的海洋沉积物,该地区目前的条件是冬季季风。在该地区,冬季季风条件导致地表水特性发生明显变化,从而影响沉积物中沉积的海洋浮游生物群落。我们使用浮游有孔虫作为一个敏感且保存完好的浮游生物类,我们首先从热带和亚热带印度洋的地表沉积物样本数据集中表征了其物种分布对环境梯度的响应。用于定量古环境重建的传递函数应用于过去2000年巴基斯坦边界的组合计数的年代际记录。重建的温度记录揭示了公元100年前后冬季季风强度的增强。在此过渡之前,冬季温度比今天高1.5摄氏度。类似于现在的条件似乎是在公元450年以后确立的,但在950年附近发生了一次奇异事件,温度升高,相应地导致了冬季季风减弱。频率分析显示了显着的75年,40年和37年周期,这从印度夏季风变化的年代际到百年尺度分辨率记录中可以得知,并被解释为太阳辐照强迫。我们对印度冬季风活动的第一个独立记录证实,冬季和夏季风被调制在相同的频带上,因此表明这两个季风系统很可能受相同的驱动力控制。

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