下西里西亚(波兰西南部)农业地区全球太阳辐射的多年变率及其与北大西洋涛动的关系

K. Bryś, Tadeusz Bryś
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引用次数: 6

摘要

本文基于波兰西南部Agroand水文气象观测站(Wrocław-Swojec Observatory)长达56年(1961-2016)的测量序列,分析了下西里西亚农业地区全球太阳辐射的长期变化。年和月全球辐射总量及其极值和平均值与华沙(波兰中部)和波茨坦(东德)的辐射数据进行了比较。还考虑了连续月份、季节和年份之间的变化动态。所进行的积极趋势表明,所调查的下西里西亚以及波兰中部和德国东部的全球辐射总量显著增加。这些趋势与北半球的长期宏观环流变化密切相关,特别是与北大西洋涛动(NAO)的相和分相密切相关。所调查的太阳总辐射值与这些宏观环流型之间的关系非常复杂,而且往往具有非同步特征。NAO正期的第一幼年期(1970年代和1980年代)是多云和多雨的,当时Wrocław-Swojec的年总太阳辐射量仅达到约3 700 MJ∙m的平均水平,暖半年约为2 800 MJ∙m。该时期与日照时数较大、年降水量较小的中期(90年代及以后)有明显差异,适足辐射总量分别为3 900 ~ 4 000 MJ∙m和3 000 ~ 3 100 MJ∙m。
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Multi-annual variability of global solar radiation in the agricultural part of Lower Silesia (SW Poland) and its relationship to the North Atlantic Oscillation
In this paper, the long-term variability of global solar radiation in the agricultural area of Lower Silesia is analyzed based on a 56-year long (1961-2016) measurement series recorded at the Agroand Hydro-meteorological Wrocław-Swojec Observatory (SW Poland). Yearly and monthly global radiation sums with their extreme and mean values were compared with radiation data from Warsaw (Central Poland) and Potsdam (East Germany). The dynamics of variability between consecutive months, seasons and years was also taken into account. The conducted positive trends show a significant increase in the investigated global radiation sums for Lower Silesia and also for Central Poland and the eastern part of Germany. The trends are strongly related to long-term macro-circulation changes in the North Hemisphere, particularly with the phases and sub-phases of the North Atlantic Oscillation (NAO). The relations between the investigated values of global solar radiation and these macro-circulation patterns are very complicated and they very often have an asynchronous character. The first, juvenile stage of the NAO positive phase (the 1970s and 1980s), when annual sums of global solar radiation in Wrocław-Swojec reached only the average level of about 3 700 MJ∙m and warm half-year about 2 800 MJ∙m respectively, was cloudy and rainy. This period was distinctly different than the advanced stage of one (the 1990’s and later years) with bigger sunshine duration and smaller annual precipitation, when the adequate radiation sums amount to 3 900-4 000 MJ∙m and 3 000-3 100 MJ∙m respectively.
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