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首页> 外文期刊>Journal of Advances in Modeling Earth Systems >Chemical Mechanisms and Their Applications in the Goddard Earth Observing System (GEOS) Earth System Model
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Chemical Mechanisms and Their Applications in the Goddard Earth Observing System (GEOS) Earth System Model

机译:化学机理及其在戈达德地球观测系统(GEOS)地球系统模型中的应用

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NASA's Goddard Earth Observing System (GEOS) Earth System Model (ESM) is a modular, general circulation model (GCM), and data assimilation system (DAS) that is used to simulate and study the coupled dynamics, physics, chemistry, and biology of our planet. GEOS is developed by the Global Modeling and Assimilation Office (GMAO) at NASA Goddard Space Flight Center. It generates near?¢????real?¢????time analyzed data products, reanalyses, and weather and seasonal forecasts to support research targeted to understanding interactions among Earth System processes. For chemistry, our efforts are focused on ozone and its influence on the state of the atmosphere and oceans, and on trace gas data assimilation and global forecasting at mesoscale discretization. Several chemistry and aerosol modules are coupled to the GCM, which enables GEOS to address topics pertinent to NASA's Earth Science Mission. This paper describes the atmospheric chemistry components of GEOS and provides an overview of its Earth System Modeling Framework (ESMF)?¢????based software infrastructure, which promotes a rich spectrum of feedbacks that influence circulation and climate, and impact human and ecosystem health. We detail how GEOS allows model users to select chemical mechanisms and emission scenarios at run time, establish the extent to which the aerosol and chemical components communicate, and decide whether either or both influence the radiative transfer calculations. A variety of resolutions facilitates research on spatial and temporal scales relevant to problems ranging from hourly changes in air quality to trace gas trends in a changing climate. Samples of recent GEOS chemistry applications are provided.
机译:NASA的戈达德地球观测系统(GEOS)地球系统模型(ESM)是一种模块化的通用循环模型(GCM)和数据同化系统(DAS),用于模拟和研究耦合动力学,物理,化学和生物学我们的星球。 GEOS由NASA戈达德太空飞行中心的全球建模和同化办公室(GMAO)开发。它会生成近乎实时的实时分析数据产品,重新分析以及天气和季节预报,以支持旨在了解地球系统过程之间相互作用的研究。对于化学,我们的工作重点是臭氧及其对大气和海洋状态的影响,以及中尺度离散化过程中的痕量气体数据同化和全球预报。 GCM耦合了多个化学和气溶胶模块,这使GEOS能够解决与NASA地球科学任务有关的主题。本文介绍了GEOS的大气化学成分,并概述了其基于地球系统建模框架(ESMF)的软件基础结构,该基础结构可促进影响循环和气候,影响人类和生态系统的各种反馈健康。我们将详细介绍GEOS如何允许模型用户在运行时选择化学机制和排放情景,确定气溶胶和化学成分之间的通讯程度,并决定是否影响辐射传递计算。各种各样的解决方案有助于研究与时空相关的问题,从空气质量的每小时变化到变化的气候中的气体趋势追踪。提供了最近的GEOS化学应用程序的样本。

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