...
首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Large-scale modeling of primary production and ice algal biomass within arctic sea ice in 1992
【24h】

Large-scale modeling of primary production and ice algal biomass within arctic sea ice in 1992

机译:1992年北极海冰内初级生产和冰藻生物量的大规模建模

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

An ice ecosystem model was coupled to a global dynamic sea ice model to assess large-scale variability of primary production and ice algal biomass within arctic sea ice. The component models are the Physical Ecosystem Model (PhEcoM) ice ecosystem model and the Los Alamos Sea Ice Model (CICE). Simulated annual arctic sea ice primary production was 15.1 Tg C; within the range of 9 to 73 Tg C estimated using in situ data. The amount of C fixed was >3 Tg C month for March, April, and May. The Bering Sea, Arctic Ocean basins, and the Canadian Archipelago/Baffin Bay were the most productive regions on an annual basis, contributing approximately 24, 18, and another 18%, respectively. High production in the Bering Sea was due to high daily production rates, while the large sea ice coverage in the Canadian Archipelago/Baffin Bay and, in particular, the Arctic Ocean basins resulted in their considerable contribution to sea ice primary production. The simulated trends, patterns, and seasonality of ice algae agree reasonably well with very limited observations. In the model, ice growth rate controls the availability of nutrients to sea ice algae, such that ocean nutrient supply is of secondary importance to ice algal growth. The numerical model results suggest that ice melt rate, which determines the proportional rate of ice algal release, controls the termination of the bloom on large scales. The model described advances the role of sea ice algae in biogeochemical cycling within global climate models
机译:将冰生态系统模型与全球动态海冰模型耦合在一起,以评估北极海冰内初级生产和冰藻生物量的大规模变异性。组件模型是物理生态系统模型(PhEcoM)冰生态系统模型和洛斯阿拉莫斯海冰模型(CICE)。模拟的北极海冰年初级产量为15.1 Tg C;使用原位数据估算的温度范围为9至73 TgC。 3月,4月和5月,固定的C量> 3 Tg C月。白令海,北冰洋盆地和加拿大群岛/巴芬湾是每年生产力最高的地区,分别贡献了约24%,18%和18%。白令海的高产量归因于日产量高,而加拿大群岛/巴芬湾,特别是北冰洋盆地的海冰覆盖面积大,这导致它们对海冰初级生产做出了巨大贡献。冰藻的模拟趋势,模式和季节性与非常有限的观测结果相当吻合。在该模型中,冰的生长速度控制着海冰藻养分的可利用性,因此海洋养分的供应对于冰藻的生长次要。数值模型结果表明,冰融化速率决定了冰藻释放的比例速率,可大规模控制水华的终止。描述的模型提高了海冰藻类在全球气候模型中的生物地球化学循环中的作用

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号