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Influence of the Pacific Decadal Oscillation, El Nino-Southern Oscillation and solar forcing on climate and primary productivity changes in the northeast Pacific

机译:太平洋年代际振荡,厄尔尼诺-南方涛动和太阳强迫对东北太平洋气候和初级生产力变化的影响

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摘要

Evidence of 11-year Schwabe solar sunspot cycles, El Nino-Southern Oscillation (ENSO) and the Pacific Decadal Oscillation (PDO) were detected in an annual record of diatomaceous laminated sediments from anoxic Effingham Inlet, Vancouver Island, British Columbia. Radiometric dating and counting of annual varves dates the sediments from AD 1947-1993. Intact sediment slabs were X-rayed for sediment structure (lamina thickness and composition based on gray-scale), and subsamples were examined for diatom abundances and for grain size. Wavelet analysis reveals the presence of ~2-3, ~4.5, ~7 and ~9-12-year cycles in the diatom record and an ~11-13 year record in the sedimentary varve thickness record. These cycle lengths suggest that both ENSO and the sunspot cycle had an influence on primary productivity and sedimentation patterns. Sediment grain size could not be correlated to the sunspot cycle although a peak in the grain size data centered around the mid-1970s may be related to the 1976-1977 Pacific climate shift, which occurred when the PDO index shifted from negative (cool conditions) to positive (warm conditions). Additional evidence of the PDO regime shift is found in wavelet and cross-wavelet results for Skeletonema costatum, a weakly silicified variant of S. costatum, annual precipitation and April to June precipitation. Higher spring (April/May) values of the North Pacific High pressure index during sunspot minima suggest that during this time, increased cloud cover and concomitant suppression of the Aleutian Low (AL) pressure system led to strengthened coastal upwelling and enhanced diatom production earlier in the year. These results suggest that the 11-year solar cycle, amplified by cloud cover and upwelling changes, as well as ENSO, exert significant influence on marine primary productivity in the northeast Pacific. The expression of these cyclic phenomena in the sedimentary record were in turn modulated by the phase of PDO, as indicated by the change in period of ENSO and suppression of the solar signal in the record after the 1976-1977 regime shift.
机译:在不列颠哥伦比亚省温哥华岛缺氧埃芬汉姆湾的硅藻质层状沉积物的年度记录中,发现了11年Schwabe太阳黑子周期,厄尔尼诺-南部涛动(ENSO)和太平洋年代际涛动(PDO)的证据。辐射测年和年度测年的日期可以追溯到公元1947-1993年的沉积物。对完整的沉积物平板进行X射线检查以了解沉积物的结构(基于灰度的层厚度和组成),并检查子样品的硅藻丰度和晶粒尺寸。小波分析揭示了硅藻记录中〜2-3,〜4.5,〜7和〜9-12年周期的存在,沉积层厚度记录中〜11-13年周期的存在。这些周期长度表明ENSO和黑子周期都对初级生产力和沉积模式有影响。尽管以1970年代中期为中心的粒度数据峰值可能与1976-1977年太平洋气候变化有关,但沉积物粒度与黑子周期无关,这发生在PDO指数从负(凉爽条件)转变时。积极(温暖的条件)。在肋骨S. Skeletonma,微弱硅化变种S.costatum,年降水量和4月至6月的降水的小波和跨小波结果中,发现了PDO模式变化的其他证据。太阳黑子极小期期间北太平洋高压指数的较高春季(4月/ 5月)值表明,在此期间,云量增加和对阿留申低压(AL)压力系统的抑制作用导致海岸上升流增强,硅藻产量增加。那一年。这些结果表明,被云层覆盖和上升流变化放大的11年太阳周期以及ENSO对东北太平洋海洋初级生产力产生了重大影响。这些循环现象在沉积记录中的表达又受PDO相位的调节,如1976-1977年政权转移后ENSO周期的变化和记录中太阳信号的抑制所表明的。

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  • 来源
    《Quaternary International》 |2013年第15期|124-139|共16页
  • 作者单位

    Department of Earth Sciences and Ottawa-Carleton Ceoscience Center, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada;

    Department of Earth Sciences and Ottawa-Carleton Ceoscience Center, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada;

    Department of Earth Sciences and Ottawa-Carleton Ceoscience Center, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada;

    School of Geography, Archeology and Palaeoecology, Queen's University Belfast BT7 INN, Northern Ireland, United Kingdom;

    School of Geography, University of Leeds, Leeds LS2 9JT, United Kingdom;

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