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Time-Frequency Characteristics of Regional Climate over Northeast China and Their Relationships with Atmospheric Circulation Patterns

机译:东北地区气候的时频特征及其与大气环流模式的关系

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The time-frequency characteristics of the variations of temperature and precipitation over the city of Changchun in northeast China and their associations with large-scale atmospheric and oceanic conditions are analyzed. It is found that the variations of the regional climate are characterized by strong semiannual signals. For precipitation, the amplitude of semiannual signal is about half of that of the annual cycle. The relationships of the Changchun temperature and precipitation with local winds and large-scale patterns of atmospheric circulation and sea surface temperature are also strongest on annual and semiannual time scales. These strong semiannual signals are potentially helpful for improving the prediction of the regional climate. On the annual time scale, the northeast China climate is affected by both the thermal contrast between the Asian continent and the tropical Indo-Pacific Oceans and that between the continent and the extratropical North Pacific. These effects are manifested by the cyclonic (anticyclonic) pattern over the Asian continent (North Pacific) and the strong southerly flow over East Asia and northwestern Pacific associated with increases in temperature and precipitation. On the semiannual time scale, the northeast China climate is mainly related to the large-scale circulation pattern centered over the North Pacific, with its western portion over northeast China, North and South Korea, and Japan. While temperature signals are related to extratropical atmospheric process more apparently, both extratropical and tropical influences are seen in the semiannual variation of precipitation. There exist strong relationships between Changchun temperature and precipitation and the North Pacific Oscillation (NPO) in the frequency band up to 7 months. Temperature increases and precipitation decreases when NPO is positive. The relationships were weak before 1980 but became stronger afterward, associated with the strengthening of the East Asian trough.
机译:分析了东北长春市气温和降水变化的时频特征及其与大尺度大气和海洋条件的关系。发现区域气候的变化以强半年信号为特征。对于降水,半年信号的振幅约为年周期的一半。长春温度和降水与局部风的关系以及大气环流和海面温度的大范围格局在年度和半年度尺度上也最强。这些强大的半年度信号可能有助于改善区域气候的预测。在年度时间尺度上,东北亚气候受亚洲大陆与热带印度洋-太平洋之间以及亚洲大陆与温带北太平洋之间热反差的影响。这些影响表现为亚洲大陆(北太平洋)上的气旋(反气旋)模式以及东亚和西北太平洋上强烈的南风,这与温度和降水的增加有关。在半年时间尺度上,东北气候主要与以北太平洋为中心的大尺度环流模式有关,其西部分布在东北,北朝鲜和韩国以及日本。尽管温度信号更明显地与温带大气过程有关,但在降水的半年变化中可以看到温带和热带的影响。在长达7个月的频段内,长春的温度和降水与北太平洋涛动(NPO)之间存在很强的关系。当NPO为正时,温度升高而降水减少。两国之间的关系在1980年以前很弱,但后来随着东亚低谷的加强而增强。

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