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首页> 外文期刊>Geophysical Research Letters >Ecosystem dynamics and export production in the central and eastern equatorial Pacific: A modeling study of impact of ENSO
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Ecosystem dynamics and export production in the central and eastern equatorial Pacific: A modeling study of impact of ENSO

机译:赤道中部和东部太平洋地区的生态系统动态和出口生产:ENSO影响的模型研究

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摘要

Biogeochemical responses to physical changes associated with the El Nino/Southern Oscillation (ENSO) phenomenon are studied for the period of 1990-2001 using a physical-biogeochemical model. During warm ENSO, the ferricline deepens in the central and eastern equatorial Pacific, resulting in low biomass and low export production. Zooplankton and large phytoplankton are more depressed than small phytoplankton in particular during the 1997-98 El Nino. The recovery from the warm ENSO alleviated iron stress, resulting in an increase of phytoplankton growth. In addition to extra iron input, the mid-1998 blooms are also attributable to extremely low grazing pressure. The rapid turn to a cold ENSO in mid-1998 may enhance export production by a factor of eight in the Nino3 area. Large phytoplankton are largely responsible for the increase of export production in the central and eastern equatorial Pacific.
机译:使用物理-生物地球化学模型研究了1990-2001年间对与厄尔尼诺/南方涛动(ENSO)现象相关的物理变化的生物地球化学响应。在ENSO温暖期间,铁路线在赤道中部和东部太平洋加深,导致生物量低和出口产量低。浮游动物和大型浮游植物比小型浮游植物更为沮丧,尤其是在1997-98年厄尔尼诺现象期间。从温暖的ENSO中恢复可以缓解铁胁迫,导致浮游植物的生长增加。除了额外的铁投入外,1998年中期的大花还归因于极低的放牧压力。 1998年年中,ENSO迅速转为寒冷,可能使Nino3地区的出口产量提高了八倍。大型浮游植物是赤道中部和东部太平洋地区出口产品增加的主要原因。

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