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ICON-ART 2.1: a flexible tracer framework and its application for composition studies in numerical weather forecasting and climate simulations

机译:ICON-ART 2.1:灵活的示踪剂框架及其在数值天气预报和气候模拟中进行成分研究的应用

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Atmospheric composition studies on weather and climate timescales require flexible, scalable models. The ICOsahedral Nonhydrostatic model with Aerosols and Reactive Trace gases (ICON-ART) provides such an environment. Here, we introduce the most up-to-date version of the flexible tracer framework for ICON-ART and explain its application in one numerical weather forecast and one climate related case study. We demonstrate the implementation of idealised tracers and chemistry tendencies of different complexity using the ART infrastructure. Using different ICON physics configurations for weather and climate with ART, we perform integrations on different timescales, illustrating the model's performance. First, we present a hindcast experiment for the 2002 ozone hole split with two different ozone chemistry schemes using the numerical weather prediction physics configuration. We compare the hindcast with observations and discuss the confinement of the vortex split using an idealised tracer diagnostic. Secondly, we study AMIP-type integrations using a simplified chemistry scheme in conjunction with the climate physics configuration. We use two different simulations: the interactive simulation, where modelled ozone is coupled back to the radiation scheme, and the non-interactive simulation that uses a default background climatology of ozone. Additionally, we introduce changes of water vapour by methane oxidation for the interactive simulation. We discuss the impact of stratospheric ozone and water vapour variations in the interactive and non-interactive integrations on the water vapour tape recorder, as a measure of tropical upwelling changes. Additionally we explain the seasonal evolution and latitudinal distribution of the age of air. The age of air is a measure of the strength of the meridional overturning circulation with young air in the tropical upwelling region and older air in polar winter downwelling regions. We conclude that our flexible tracer framework allows for tailor-made configurations of ICON-ART in weather and climate applications that are easy to configure and run well.
机译:关于天气和气候时标的大气成分研究需要灵活,可扩展的模型。具有气溶胶和反应性痕量气体的ICOsahedral非静水模型(ICON-ART)提供了这样的环境。在这里,我们介绍ICON-ART的最新版本的弹性跟踪器框架,并解释其在一项数值天气预报和一项与气候有关的案例研究中的应用。我们演示了使用ART基础设施实现理想化的示踪剂和不同复杂程度的化学趋势。我们通过ART使用天气和气候的不同ICON物理配置,在不同的时间尺度上进行了积分,从而说明了模型的性能。首先,我们使用数值天气预报物理配置,通过两种不同的臭氧化学方案,对2002年的臭氧空洞进行了后验实验。我们将观测结果与观测结果进行比较,并讨论使用理想化的示踪剂诊断对涡旋分裂的限制。其次,我们使用简化的化学方案结合气候物理学配置来研究AMIP型积分。我们使用两种不同的模拟:交互式模拟(其中将建模的臭氧耦合回辐射方案)和非交互式模拟(使用默认的臭氧背景气候)。此外,我们还介绍了甲烷氧化引起的水蒸气变化,以进行交互模拟。我们讨论了在水汽带记录仪上相互作用和非相互作用积分中平流层臭氧和水蒸气变化的影响,以此作为对热带上升变化的一种度量。另外,我们解释了空气年龄的季节演变和纬度分布。空气年龄是对热带上升区年轻空气和极地冬季下降区较高空气经向翻转循环强度的度量。我们得出结论,我们灵活的跟踪器框架允许在天气和气候应用中对ICON-ART进行量身定制的配置,这些配置易于配置和良好运行。

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