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Relationship between time-series diatom fluxes in the central and western equatorial Pacific and ENSO-associated migrations of the Western Pacific Warm Pool

机译:赤道中西太平洋时间硅藻通量与西太平洋暖池的ENSO相关迁移之间的关系

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摘要

The water masses of the central and western equatorial Pacific can be divided into two parts: the Western Pacific Warm Pool (WPWP) and the Equatorial Upwelling Region (EUR). The behavior of the WPWP plays a significant role in global climate changes such as the El Nino-Southern Oscillation (ENSO), and it drastically modifies the oceano-graphic conditions in the area every few years. It is important to evaluate changes in time-series diatom fluxes during both the El Nino and the La Nina events. As a part of the Global Carbon Cycle and Related Mapping based on Satellite Imagery (GCMAPS) Program, time-series sediment trap moorings were deployed and recovered along the Equator at seven stations (Sites MT1-MT7) during five R/V Mirai cruises in the central and western Pacific during January 1999-January 2003. The entire length of this study is divided into two phases depending on the oceanographic conditions: the La Nina event (1999 and 2000); and the El Nino event (2002). Site MT3 was located in the WPWP and Sites MT5-MT7 were in the EUR. Annual means of total diatom fluxes increased towards the east in each year. The fluxes observed at Sites MT4-MT6 decreased from the La Nina event to the El Nifio event. However, the fluxes observed at Site MT3 in 2001 and 2002 were higher than those in 2000. Total diatom fluxes showed different seasonal patterns at all sites. The diatom assemblages in the WPWP differed from those of the EUR. Pennate diatoms (e.g., Nitzschia bicapitata, Thalassionema nitzschioides) dominated in the WPWP, while the relative abundances of centric diatoms (e.g., Rhizosolenia bergonii, Azpeitia spp., Thalassiosira spp.) were higher than those of pennate diatoms in the EUR. The diatom fluxes during the La Nina event reflected seasonal oscillation of the WPWP in spatial extent. At Site MT3 during El Nino, terrestrial materials appeared to have been transported by subsurface currents, which might be a secondary influence on total diatom fluxes. The spatial extent of the WPWP reached Site MT7 in 2002, when total diatom fluxes decreased in the sediment traps located in the eastern region including Site MT7. Therefore, we conclude that the relationships between the ENSO and diatoms fluxes in the western and central equatorial Pacific can be explained by the geographic (west-east) expansion or contraction of the WPWP.
机译:赤道中西部太平洋地区的水体可分为两个部分:西太平洋暖池(WPWP)和赤道上升区(EUR)。 WPWP的行为在全球气候变化(例如厄尔尼诺-南方涛动(ENSO))中起着重要作用,并且每隔几年就会大大改变该地区的海洋学条件。评估厄尔尼诺事件和拉尼娜事件期间时间序列硅藻通量的变化非常重要。作为基于卫星影像(GCMAPS)计划的全球碳循环和相关制图的一部分,在2004年的5次R / V Mirai巡洋舰航行期间,按时间序列在7个站(MT1-MT7站点)沿赤道部署并回收了沉积物陷阱系泊系统。这项研究的整个过程根据海洋条件分为两个阶段:La Nina事件(1999年和2000年); 1999年1月至2003年1月。以及El Nino事件(2002)。 MT3站点位于WPWP中,MT5-MT7站点位于欧元中。每年硅藻总通量的年均值向东方增加。从La Nina事件到El Nifio事件,在MT4-MT6站点观测到的通量下降了。但是,在2001年和2002年在MT3站点观测到的通量高于2000年。在所有站点上,硅藻的总通量显示出不同的季节性模式。 WPWP中的硅藻组合与EUR中的不同。在WPWP中,羽状硅藻(如Nitzschia bicapitata,Thalassionema nitzschioides)占主导地位,而中枢硅藻的相对丰度(如Rhizosolenia bergonii,Azpeitia spp。,Thalassiosira spp。)高于Pennate硅藻。 La Nina事件期间的硅藻通量在空间范围上反映了WPWP的季节性振荡。在厄尔尼诺现象期间的MT3站点,地面物质似乎已被地下电流所运输,这可能是对总硅藻通量的次要影响。 WPWP的空间范围在2002年达到MT7站点,当时位于东部地区(包括MT7站点)的沉积物陷阱中的总硅藻通量减少了。因此,我们得出结论,赤道西太平洋和中部太平洋的ENSO与硅藻通量之间的关系可以用WPWP的地理(西-东)膨胀或收缩来解释。

著录项

  • 来源
    《Deep-Sea Research》 |2009年第8期|1298-1318|共21页
  • 作者单位

    Department of Earth and Planetary Sciences, Graduate School of Sciences, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan;

    Center for Advanced Marine Core Research, Kochi University. B200 Monobe. Nankoku 783-8502, Japan;

    Department of Earth and Planetary Sciences, Graduate School of Sciences, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan;

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

    diatoms; seasonal fluxes; el nino; la nina; the equatorial pacific;

    机译:硅藻季节性通量;厄尔尼诺;拉尼娜赤道太平洋;

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