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Recent Reversal of the Upper-Tropospheric Temperature Trend and its Role in Intensifying the East Asian Summer Monsoon

机译:高层大气温度趋势的近期逆转及其在增强东亚夏季风中的作用

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摘要

At the beginning of the 21st century, the July and August (JA) mean upper-tropospheric temperature over East Asia shows a significant increasing trend, contrary to the decreasing trend in the late 1970 s. The largest warming center is over northern China (between 30°N–45°N and 85°E–120°E) around 300 hPa. Together with the temperature rising, the geo-potential height rises above the warming center and drops below, which connects closely to a correspondingly significant decadal shift of the general circulation over East Asia. In the upper-level of the troposphere, an anomalous anti-cyclone dominates, and the 200–hPa westerly jet strengthens due to the increasing pole-ward geo-potential height gradient. In the lower-troposphere, the anomalous southerly wind increases around Yangtze River Valley and the East Asian summer monsoon intensifies. The integrated circulation changes seriously impact summer precipitation over East Asia. The so-called “southern flood and northern drought” (SFND) pattern since the 1970 s over eastern China has changed. As the cooling center in the 1970 s moves southward, the dry belt moves southward as well. A wet belt dominates the Huaihe River Valley after the temperature trend reversal at 2005 while southern China experiences a dry condition.
机译:在21世纪初,东亚7月和8月的平均对流层温度呈明显上升趋势,与1970年代后期的下降趋势相反。最大的变暖中心在中国北方(介于30°N–45°N和85°E–120°E之间),约为300 hPa。随着温度的升高,地势高度上升到变暖中心以上,而下降到下降以下,这与东亚总体环流的相应年代际变化密切相关。在对流层的上层,反气旋异常占主导地位,并且由于极向地势高度梯度的增加,200hPa的西风急流增强了。在对流层低层,长江流域附近的南风异常增加,东亚夏季风增强。整体环流变化严重影响了东亚夏季降水。自1970年代以来,中国东部的所谓“南部洪水和北部干旱”(SFND)模式已经改变。随着1970年代的冷却中心向南移动,干燥带也向南移动。 2005年温度趋势逆转后,湿带主导了淮河流域,而华南地区则处于干旱状态。

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