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Prescribing Zonally Asymmetric Ozone Climatologies in Climate Models: Performance Compared to a Chemistry‐Climate Model

机译:在气候模型中规定分区不对称臭氧气候:与化学气候模型相比的性能

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摘要

Three different methods of specifying ozone in an atmosphere‐only version of the HadGEM3‐A global circulation model are compared to the coupled chemistry configuration of this model. These methods include a specified zonal‐mean ozone climatology, a specified 3‐D ozone climatology, and a calculated‐asymmetry scheme in which a specified zonal‐mean ozone field is adapted online to be consistent with dynamically produced zonal asymmetries. These simulations all use identical boundary conditions and, by construction, have the same climatological zonal‐mean ozone, that of the coupled chemistry configuration of the model. Prescribing ozone, regardless of scheme, results in a simulation which is 3–4 times faster than the coupled chemistry‐climate model (CCM). Prescribing climatological zonal asymmetries leads to a vortex which is the correct intensity but which is systematically displaced over regions with lower prescribed ozone. When zonal asymmetries in ozone are free to evolve interactively with model dynamics, the modeled wintertime stratospheric vortex shape and mean sea level pressure patterns closely resemble that produced by the full CCM in both hemispheres, in terms of statistically significant differences. Further, we separate out the two distinct pathways by which zonal ozone asymmetries influence modeled dynamics. We present this interactive‐ozone zonal‐asymmetry scheme as an inexpensive tool for accurately modeling the impacts of dynamically consistent ozone fields as seen in a CCM which ultimately influence mean sea level pressure and tropospheric circulation (particularly during wintertime in the Northern Hemisphere, when ozone asymmetries are generally largest), without the computational burden of simulating interactive chemistry.
机译:将仅在大气版本的HadGEM3-A全球循环模型中指定臭氧的三种不同方法与该模型的耦合化学结构进行了比较。这些方法包括指定的纬向平均臭氧气候学,指定的3-D臭氧气候学和计算不对称方案,其中将指定的纬向平均臭氧场在线调整以与动态产生的纬向不对称一致。这些模拟都使用相同的边界条件,并且通过构造具有相同的气候纬向平均臭氧,与模型的耦合化学构型相同。无论采用哪种方案,规定使用臭氧都会产生比耦合的化学-气候模型(CCM)快3-4倍的模拟结果。规定气候带状不对称会导致涡旋,涡旋的强度正确,但在指定臭氧含量较低的区域会被系统地置换。当臭氧中的纬向不对称性与模型动力学自由地相互作用时,就统计学上的显着差异而言,建模的冬季平流层涡旋形状和平均海平面压力模式与两个半球中整个CCM产生的模式非常相似。此外,我们将区域臭氧不对称影响建模动力学的两个不同途径分开。我们将这种互动式臭氧纬向不对称方案作为一种廉价工具,用于准确地模拟CCM中动态一致的臭氧场的影响,最终影响平均海平面压力和对流层环流(特别是在北半球的冬季,当臭氧不对称性通常最大),而没有模拟相互作用化学的计算负担。

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