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Improving GEOS-Chem Model Tropospheric Ozone through Assimilation of Pseudo Tropospheric Emission Spectrometer Profile Retrievals

机译:通过同化伪流层发射光谱仪轮廓的同化改善Geos-Chem模型对流层臭氧

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4D-variational or adjoint-based data assimilation provides a powerful means for integrating observations with models to estimate an optimal atmospheric state and to characterize the sensitivity of that state to the processes controlling it. In this paper we present the improvement of 2006 summer time distribution of global tropospheric ozone through assimilation of pseudo profile retrievals from the Tropospheric Emission Spectrometer (TES) into the GEOS-Chem global chemical transport model based on a recently-developed adjoint model of GEOS-Chem v7. We are the first to construct an adjoint of the linearized ozone parameterization (linoz) scheme that can be of very high importance in quantifying the amount of tropospheric ozone due to upper boundary exchanges. Tests conducted at various geographical levels show that the mismatch between adjoint values and their finite difference approximations could be up to 87% if linoz module adjoint is not used, leading to a divergence in the quasi-Newton approximation algorithm (L-BFGS) during data assimilation. We also present performance improvements in this adjoint model in terms of memory usage and speed. With the parallelization of each science process adjoint subroutine and sub-optimal combination of checkpoints and recalculations, the improved adjoint model is as efficient as the forward GEOS-Chem model.
机译:4D-变或基于伴随数据同化提供了集成的观察与模型来估计最佳的大气状态和到该状态的灵敏度表征来控制它的过程的有力手段。在本文中,我们提出2006年全球对流层臭氧的夏季时间分布的改善,通过从对流层发射光谱仪(TES)的伪轮廓检索同化到基于GEOS-的最近开发伴随模型GEOS-CHEM全球化学传输模型化学V7。我们是第一个构造可在量化对流层臭氧的量是非常高的重要性线性臭氧参数(linoz)方案的伴随由于上界的交流。在不同的地理水平下进行的测试表明,伴随值和它们的有限差分近似之间的失配可能是高达87%,如果不使用linoz模块伴随,导致发散在数据期间的准牛顿近似算法(L-BFGS)同化。我们也存在性能方面的改进在这个伴随模式在内存使用和速度方面。与检查点和重新计算的每个过程的科学伴随子程序和次优的组合的并行化,改进伴随模式是一样有效的正向GEOS-CHEM模型。

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