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Design of an observational strategy for quantifying the Southern Ocean uptake of CO2

机译:量化南大洋二氧化碳吸收量的观测策略设计

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+AFs- 1+AF0- A sampling strategy to estimate the annual mean CO2 uptake by the Southern Ocean was developed by applying two-dimensional Fourier transforms and signal-to-noise ratios to the simulated air-sea CO2 fluxes and Delta pCO(2) from an ocean biogeochemical model driven with NCEP-R1. Observations of pCO(2) were used to validate the statistical properties of the model and to estimate the mesoscale variability not captured by the model resolution. Sampling regularly every 3 months, at every 30 degrees in longitude and 3 degrees in latitude is sufficient to determine the net Southern Ocean CO2 uptake. We applied this sampling strategy to the simulated air-sea fluxes to estimate a net annual mean CO2 uptake of 0.6 0.1 PgC/yr ( 1990 - 1999). This uncertainty in the estimate was dominated by the simulated interannual variability, and not by errors in the sampling or unresolved mesoscale variability. Therefore sampling at higher resolutions in space and time would not reduce the uncertainty in the Southern Ocean annual mean uptake any further. These results show that a doubling of the current Southern Ocean sampling ( in longitude) would be required to constrain the net annual mean air-sea CO2 fluxes to within the natural variability of the system.
机译:+ AFs-1 + AF0-通过将二维傅里叶变换和信噪比应用于模拟的海-海CO2通量和Delta pCO(2),开发了一种估算南大洋年平均CO2吸收量的采样策略。 )来自使用NCEP-R1驱动的海洋生物地球化学模型。 pCO(2)的观察结果用于验证模型的统计特性,并估计模型分辨率未捕获的中尺度变化。每3个月,经度30度和纬度3度进行定期采样足以确定南大洋二氧化碳净吸收量。我们将此采样策略应用于模拟的海-气通量,以估算0.6 0.1 PgC /年(1990-1999)的年净二氧化碳平均吸收量。估计中的不确定性主要由模拟的年际变化决定,而不是由采样误差或未解决的中尺度变化决定。因此,以更高的时空分辨率进行采样不会减少南大洋年平均吸收的不确定性。这些结果表明,需要将当前的南大洋采样加倍(以经度计),以将净年平均海海CO2通量限制在系统的自然变化范围内。

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