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Seasonal variations of particle fluxes in the northeastern equatorial Pacific during normal and weak El Niño periods

机译:厄尔尼诺现象正常和弱期间东北赤道太平洋颗粒通量的季节性变化

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摘要

A moored time-series sediment trap was deployed at the Korea Ocean Research and Development Institute Long-term Monitoring (KOMO) Station in the northeastern equatorial Pacific from July 2003 to June 2005. A weak El Niño event was recorded from June 2004 to February 2005, and normal conditions were observed in the remaining periods. The normal period was divided into two seasons based on the cycles of environmental properties in the surface ocean: cold (December–May) and warm (June–November) season. During the normal period, the total mass flux was 1.7 times higher in the cold season than in the warm season. Particularly, the CaCO3 flux was nearly three times higher in the cold season. The enhanced CaCO3 flux in the cold season was attributed to an increased foraminiferal flux, which may have influenced the seasonal variability of the total mass flux at the KOMO station. The enhanced foraminiferal flux during the cold season may have been caused by the environmental changes of the surface ocean in response to wind-driven mixing resulting in supply of subsurface nutrient-enriched water. Particle fluxes during the weak El Niño period were lower by 30% than those during the normal period, which was consistent with previous findings in the central and eastern equatorial Pacific.
机译:2003年7月至2005年6月,在东北赤道太平洋的韩国海洋研究与发展研究所长期监测(KOMO)站部署了系泊式时间序列沉积物捕集器。2004年6月至2005年2月,录得微弱的厄尔尼诺事件。 ,并且在剩余期间内观察到正常情况。根据表层海洋的环境特性周期,正常时期分为两个季节:冷季(12月至5月)和暖季(6月至11月)。在正常时期,冷季的总质量通量是暖季的1.7倍。特别是在寒冷季节,CaCO3 通量高出近三倍。寒冷季节CaCO3 通量的增加归因于有孔虫通量的增加,这可能影响了KOMO台站总质量通量的季节性变化。寒冷季节有孔虫通量的增加可能是由表层海洋的环境变化引起的,该变化是由于风驱动混合而导致提供了地下营养丰富的水。厄尔尼诺现象弱时期的粒子通量比正常时期低30%,这与赤道中部和东部的先前发现一致。

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