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Influence of ENSO variability on sinking-particle fluxes in the northeastern equatorial Pacific

机译:ENSO变异性对赤道东北太平洋下沉粒子通量的影响

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摘要

A time-series sediment trap was operated from July 2003 to July 2008 at a station located in the 10°N thermocline ridge of the northeastern equatorial Pacific (10°30'N, 131°20'W), with the aim of understanding variations in natural background sinking-particle flux and the influence on such fluxes of ENSO (El Nino-Southern Oscillation). Each one of weak El Nino, moderate El Nino and moderate La Nina were observed during the monitoring period. During non-ENSO periods, total mass fluxes varied from 4.1 to 36.9 mg m~(-2), with a distinct seasonal variation, ranging from an average flux of 14.0 mg m~(-2)d~(-1) in the warm season (June-November) to 25.3mgm~(-2)d~(-1) in the cold season (December-May). This seasonal fluctuation was characterized by a distinct difference in CaCO_3 flux between the two seasons. The enhanced particle fluxes during the cold season are attributed to the supply of nutrient-enriched subsurface water by wind-driven vertical mixing, supported by a simultaneous reduction in sea surface temperature and enhanced trade winds. The weak El Nino event occurred in the monitoring period had no recognizable effect on particle fluxes in the study area, but the moderate El Nino event was accompanied by a significant reduction in particle fluxes to 60% of the average background value in the warm season. In contrast, particle fluxes during the moderate La Nina increased to a maximum value of 129.9 mg m~(-2) d~(-1) almost three times the average background value. Organic carbon and biogenic silica fluxes were most sensitive to the El Nino and La Nina conditions. The observed variations of particle fluxes are synchronized with those of chlorophyll-a, suggesting primary productivity for the main cause of flux change. The present data indicate that marked seasonal variability in background fluxes commonly exceeds the variability associated with ENSO and post-ENSO signals, which should be taken into account when evaluating the influence of ENSO on sinking particle fluxes in the 10°N thermocline ridge area.
机译:从2003年7月至2008年7月,在位于赤道东北太平洋(10°30'N,131°20'W)的10°N跃层脊上的一个台站运行了一个时序沉积物捕集器,目的是了解变化自然背景下沉粒子通量及其对ENSO(厄尔尼诺-南方涛动)通量的影响。在监测期间,分别观察到了弱的厄尔尼诺,中度的厄尔尼诺和中度的拉尼娜。在非ENSO时期,总通量在4.1至36.9 mg m〜(-2)之间变化,并具有明显的季节变化,其范围内的平均通量为14.0 mg m〜(-2)d〜(-1)。暖季(6月至11月)至冷季(12月至5月)的25.3mgm〜(-2)d〜(-1)。这种季节性波动的特征是两个季节之间的CaCO_3通量存在明显差异。在寒冷季节,颗粒通量的增加归因于通过风速驱动的垂直混合提供营养丰富的地下水,同时还降低了海面温度并增强了顺风。在监测期内发生的弱厄尔尼诺事件对研究区域的颗粒通量没有可识别的影响,但中等程度的厄尔尼诺事件伴随着颗粒通量的显着下降,在暖季期间降至平均背景值的60%。相反,中度La Nina期间的粒子通量增加到最大值129.9 mg m〜(-2)d〜(-1),几乎是平均背景值的三倍。有机碳和生物二氧化硅通量对厄尔尼诺和拉尼娜条件最敏感。观察到的粒子通量变化与叶绿素-a的变化同步,表明通量变化主要原因的主要生产力。当前数据表明,背景通量的明显季节性变化通常超过与ENSO和ENS后信号相关的变化,在评估ENSO对10°N跃层脊区域沉降颗粒通量的影响时应考虑到这一点。

著录项

  • 来源
    《Deep-Sea Research》 |2011年第8期|p.865-874|共10页
  • 作者单位

    Deep-Sea & Marine Ceo-Resources Research Department, KORDI, P.O. Box 29, Ansan 425-600, Republic of Korea;

    Climate Change & Coastal Disaster Research Department, KORDI, P.O. Box 29, Ansan 425-600, Republic of Korea;

    Deep-Sea & Marine Ceo-Resources Research Department, KORDI, P.O. Box 29, Ansan 425-600, Republic of Korea;

    Deep-Sea & Marine Ceo-Resources Research Department, KORDI, P.O. Box 29, Ansan 425-600, Republic of Korea;

    Department of Oceanography, Pusan National University, Busan 609-735, Republic of Korea;

    Department of Atmospheric Science, Kongju National University, Chungnam 314-701, Republic of Korea;

    Deep-Sea & Marine Ceo-Resources Research Department, KORDI, P.O. Box 29, Ansan 425-600, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    time-series sediment trap; particle flux; seasonal variation; el nino; la nina;

    机译:时序沉淀池粒子通量季节性变化;厄尔尼诺;拉尼娜;

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