首页> 外文期刊>Global Biogeochemical Cycles >Quantifying the drivers of ocean-atmosphere CO2 fluxes
【24h】

Quantifying the drivers of ocean-atmosphere CO2 fluxes

机译:量化海洋大气二氧化碳通量的驱动因素

获取原文
获取原文并翻译 | 示例
           

摘要

A mechanistic framework for quantitatively mapping the regional drivers of air-sea CO2 fluxes at a global scale is developed. The framework evaluates the interplay between (1) surface heat and freshwater fluxes that influence the potential saturated carbon concentration, which depends on changes in sea surface temperature, salinity and alkalinity, (2) a residual, disequilibrium flux influenced by upwelling and entrainment of remineralized carbon- and nutrient-rich waters from the ocean interior, as well as rapid subduction of surface waters, (3) carbon uptake and export by biological activity as both soft tissue and carbonate, and (4) the effect on surface carbon concentrations due to freshwater precipitation or evaporation. In a steady state simulation of a coarse-resolution ocean circulation and biogeochemistry model, the sum of the individually determined components is close to the known total flux of the simulation. The leading order balance, identified in different dynamical regimes, is between the CO2 fluxes driven by surface heat fluxes and a combination of biologically driven carbon uptake and disequilibrium-driven carbon outgassing. The framework is still able to reconstruct simulated fluxes when evaluated using monthly averaged data and takes a form that can be applied consistently in models of different complexity and observations of the ocean. In this way, the framework may reveal differences in the balance of drivers acting across an ensemble of climate model simulations or be applied to an analysis and interpretation of the observed, real-world air-sea flux of CO2.
机译:建立了在全球范围内定量绘制海气CO2通量区域驱动力的机制框架。该框架评估(1)影响潜在饱和碳浓度的表面热量和淡水通量之间的相互作用,这取决于海面温度,盐度和碱度的变化;(2)受再矿化和夹带影响的残余不平衡通量来自海洋内部的富含碳和营养的水,以及地表水的快速俯冲,(3)碳的吸收和通过生物活性(作为软组织和碳酸盐)的输出,以及(4)对地表碳浓度的影响淡水沉淀或蒸发。在粗分辨率海洋环流和生物地球化学模型的稳态模拟中,各个确定成分的总和接近模拟的已知总通量。在不同的动力学机制中确定的先导平衡是在表面热通量驱动的CO2通量与生物驱动的碳吸收与不平衡驱动的碳放气的组合之间。当使用每月平均数据进行评估时,该框架仍然能够重建模拟通量,并且采用的形式可以一致地应用于不同复杂性和海洋观测的模型中。这样,该框架可以揭示整个气候模型模拟中驱动程序平衡的差异,或者可以用于分析和解释观察到的真实世界中海气通量。

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