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On what scales can GOSAT flux inversions constrain anomalies in terrestrial ecosystems?

机译:在什么比例可以在陆地生态系统中限制异常?

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Interannual variations in temperature and precipitation impact the carbon balance of terrestrial ecosystems, leaving an imprint in atmospheric CO2. Quantifying the impact of climate anomalies on the net ecosystem exchange (NEE) of terrestrial ecosystems can provide a constraint to evaluate terrestrial biosphere models against and may provide an emergent constraint on the response of terrestrial ecosystems to climate change. We investigate the spatial scales over which interannual variability in NEE can be constrained using atmospheric CO2 observations from the Greenhouse Gases Observing Satellite (GOSAT). NEE anomalies are calculated by performing a series of inversion analyses using the GEOS-Chem adjoint model to assimilate GOSAT observations. Monthly NEE anomalies are compared to “proxies”, variables that are associated with anomalies in the terrestrial carbon cycle, and to upscaled NEE estimates from FLUXCOM. Statistically significant correlations (P0.05) are obtained between posterior NEE anomalies and anomalies in soil temperature and FLUXCOM NEE on continental and larger scales in the tropics, as well as in the northern extratropics on subcontinental scales during the summer (R2≥0.49), suggesting that GOSAT measurements provide a constraint on NEE interannual variability (IAV) on these spatial scales. Furthermore, we show that GOSAT flux inversions are generally better correlated with the environmental proxies and FLUXCOM NEE than NEE anomalies produced by a set of terrestrial biosphere models (TBMs), suggesting that GOSAT flux inversions could be used to evaluate TBM NEE fluxes.
机译:温度和降水的依赖性变化会影响陆地生态系统的碳平衡,在大气中留下印记。量化气候异常对陆地生态系统的净生态系统交易所(NEE)的影响,可以为评估陆地生物圈模型的限制,并可能为陆地生态系统对气候变化的反应提供紧急限制。我们研究了使用从温室气体观察卫星(Gosat)的温室气体的大气二氧化碳观察来限制NEE中的续变性的空间尺度。通过使用Geos-Chem伴随模型进行一系列反演分析来计算Nee异常,以使GOSAT观察分析。每月NEE异常与“代理”,与地面碳循环中的异常相关的变量,以及来自Fluxcom的Upscaled Nee估计值。在夏季,在土壤温度和土壤温度和巨大尺度上的欧式和更大鳞片上的欧洲温度和较大尺度的异常之间获得了统计学上的相关性(p0.05),以及在夏季的亚洲鳞状鳞片上的北欧洲级别(R2≥0.49),建议GOSAT测量为这些空间尺度的NEE依赖性变异性(IAV)提供了约束。此外,我们表明Gosat助焊剂反转通常与由一组陆地生物圈模型(TBMS)产生的NEE异常相关的环境代理和FLUXCON NEE相关,这表明GOSAT助焊剂反转可用于评估TBM NEE通量。

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