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Regional air-sea coupled model simulation for two types of extreme heat in North China

机译:华北地区两种极端热量的区域海海耦合模型模拟

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Extreme heat (EH) over North China (NC) is affected by both large scale circulations and local topography, and could be categorized into foehn favorable and no-foehn types. In this study, the performance of a regional coupled model in simulating EH over NC was examined. The effects of regional air-sea coupling were also investigated by comparing the results with the corresponding atmosphere-alone regional model. On foehn favorable (no-foehn) EH days, a barotropic cyclonic (anticyclonic) anomaly is located to the northeast (northwest) of NC, while anomalous northwesterlies (southeasterlies) prevail over NC in the lower troposphere. In the uncoupled simulation, barotropic anticyclonic bias occurs over China on both foehn favorable and no-foehn EH days, and the northwesterlies in the lower troposphere on foehn favorable EH days are not obvious. These biases are significantly reduced in the regional coupled simulation, especially on foehn favorable EH days with wind anomalies skill scores improving from 0.38 to 0.47, 0.47 to 0.61 and 0.38 to 0.56 for horizontal winds at 250, 500 and 850 hPa, respectively. Compared with the uncoupled simulation, the reproduction of the longitudinal position of Northwest Pacific subtropical high (NPSH) and the spatial pattern of the low-level monsoon flow over East Asia are improved in the coupled simulation. Therefore, the anticyclonic bias over China is obviously reduced, and the proportion of EH days characterized by anticyclonic anomaly is more appropriate. The improvements in the regional coupled model indicate that it is a promising choice for the future projection of EH over NC.
机译:华北地区(NC)的极端热量(EH)受到大规模环流和局部地形的影响,并且可以分为有利型和无优势型。在这项研究中,检查了区域耦合模型在NC上模拟EH的性能。通过将结果与相应的单独大气区域模型进行比较,还研究了区域海海耦合的影响。在EH有利(无泡沫)日,正压气旋(反气旋)异常位于北卡罗来纳州的东北(西北),而西北对流层异常(东南部)高于对流层低层。在非耦合模拟中,在福恩EH和非福恩EH日,中国均出现正压反气旋偏斜,在福恩EH天对流层低层的西北风不明显。这些偏差在区域耦合模拟中显着降低,尤其是在良好的EH天,风向异常技能得分分别从250、500和850 hPa的水平风分别提高了0.38至0.47、0.47至0.61和0.38至0.56。与非耦合模拟相比,耦合模拟改善了西北太平洋副热带高压(NPSH)纵向位置的再现和东亚低层季风流的空间格局。因此,中国的反气旋偏差明显减少,以反气旋异常为特征的EH天数的比例更合适。区域耦合模型的改进表明,对于EH超过NC的未来预测,这是一个有前途的选择。

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