Atmospheric response to cold wintertime Tibetan Plateau conditions over eastern Asia in climate models

Alice Portal, Fabio D'Andrea, Paolo Davini, Mostafa E. Hamouda, Claudia Pasquero
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Abstract

Abstract. Central Asian orography (namely the Tibetan and Mongolian plateaux) sets important features of the winter climate over eastern Asia and the Pacific. By deflecting the mid-latitude jet polewards it contributes to the formation of the Siberian high and, on the lee side, to the advection of dry cold continental air over the eastern Asian coast and the Pacific Ocean, where atmospheric instability and cyclogenesis thrive. While the mechanic forcing by the orography is assessed in a number of modelling studies, it is still not clear how near-surface temperature over the two most prominent orographic barriers of the central Asian continent – the Tibetan and Mongolian plateaux – influences the winter climate. The problem is particularly relevant in view of a well-known cold bias in state-of-the-art climate models in proximity to the Tibetan Plateau, likely related to the modelling of land processes and land–atmosphere interaction over complex orography. Here we take advantage of the large spread in near-surface temperature over the central Asian plateaux within the Coupled Model Intercomparison Project Phase 6 (CMIP6) to study how colder-than-average Asian plateau temperatures impact the atmospheric circulation. Based on composites of the CMIP6 models' climatologies showing the coldest Tibetan Plateau conditions, we find that such negative temperature anomalies appear to amplify the atmospheric response to orography, with an intensification of the eastern Asian winter monsoon and of the equatorward flank of the Pacific jet. The results of the CMIP6 composite analysis are supported by experiments run with an intermediate-complexity atmospheric model, forced by a similar pattern of cold surface temperatures over the central Asian plateaux. Within this setting, the relative influence of the Tibetan and the Mongolian Plateau surface conditions is analysed. Based on the results reported in this work we project that advances in the modelling of the land energy budget over the elevated regions of central Asia could improve the simulation of the climate in the Asian–Pacific sector climate, together with the reliability of climate projections and the performance of shorter-term forecasts.
气候模式对东亚青藏高原冬季寒冷条件的大气响应
摘要中亚地形(即青藏高原和蒙古高原)确定了东亚和太平洋冬季气候的重要特征。通过使中纬度急流向极地偏转,它促成了西伯利亚高压的形成,而在背风面,它促成了东亚海岸和太平洋上空干燥寒冷的大陆空气的平流,在那里大气不稳定和气旋形成活跃。虽然许多模拟研究评估了地形的机械强迫,但仍然不清楚中亚大陆两个最突出的地形障碍——青藏高原和蒙古高原——的近地表温度如何影响冬季气候。考虑到青藏高原附近最先进的气候模式中存在众所周知的冷偏差,这一问题尤其重要,这可能与复杂地形上陆地过程和陆地-大气相互作用的模拟有关。本文利用耦合模式比对项目第6阶段(CMIP6)中亚高原近地表温度的巨大差异,研究低于平均水平的亚洲高原温度对大气环流的影响。基于CMIP6模式对青藏高原最冷气候条件的综合分析,我们发现这种负温度异常似乎放大了大气对地形的响应,东亚冬季风和太平洋急流的赤道侧增强。CMIP6综合分析的结果得到了中等复杂大气模式实验的支持,该模式受到中亚高原类似冷地表温度模式的影响。在此背景下,分析了青藏高原和蒙古高原地表条件的相对影响。根据这项工作报告的结果,我们预测中亚高纬度地区陆地能量收支模型的进展可以改善亚太地区气候的模拟,以及气候预测的可靠性和短期预测的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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