1981-2024年西藏地区太阳总辐射变化特征及归因分析OA
Spatiotemporal Variation Characteristics and Attribution Analysis of Total Solar Radiation in Xizang from 1981 to 2024
研究青藏高原暖湿化背景下西藏太阳总辐射变化,可为评估其在清洁能源开发和保障方面的潜力提供参考.利用 1981-2024 年西藏 38 个气象站点逐月日照时数、日照百分率及粮食产量资料,基于Ångstrom-Prescott 经验模型法,采用线性倾向估计、Pearson 相关分析、R/S 分析和 Mann-Kendall 检验等方法,分析 1981-2024 年西藏全年和四季太阳总辐射(Q)的时空变化特征和影响因素,及其对粮食产量的影响.结果表明:(1)气候基准期 1991-2020 年西藏 81.5%的站点年 Q 均超过 6300MJ·m-2,达到国家气象行业标准中太阳能资源的最丰富等级,非常适宜太阳能资源的开发.(2)1981-2024 年西藏年 Q 以15.3MJ·m-2·10a-1 的速率减少,61%~66%的站点春、夏和秋季 Q 呈下降趋势,71%站点冬季 Q 呈增加趋势.(3)与气候基准期 1991-2020 年平均值比较,1980s-2000s 西藏年 Q 偏高 4.5~114.8MJ·m-2,1980s 最明显;2010s 偏低 17.1MJ·m-2.(4)未来 30a(2021-2050 年)春季、夏季和年 Q 持续下降的可能性较高;秋季 Q 持续减少和冬季 Q 持续增加的可能性较低.夏季、冬季和年 Q 突变时间发生于 1990s 中后期,春季、秋季 Q 转折点分别出现于 2000 年前后和 2012 年.(5)1981-2024 年 5 月 Q 与西藏粮食总产、单产呈极显著负相关关系,年 Q 的下降趋势有利于粮食增产.(6)1981-2024 年平均低云量显著增加是造成年 Q 下降的主要原因.西藏年太阳总辐射总体上趋于下降,未来持续下降的可能性较高,但仍能维持最丰富等级,具有较高的开发潜力.
This study examined changes in solar radiation in the context of a warming and wetter climate regime in Xizang,with the aim of providing a reference for assessing the potential in the development and conservation of clean energy.Monthly sunshine duration and sunshine percentage,together with grain yield data were collected at 38 meteorological stations in Xizang from 1981 to 2024.Variations in annual and seasonal solar radiation(Q)and their spatiotemporal variation characteristics,as well as the influencing factors and their influence on grain yield,were analyzed in the same period based on the Ångstrom-Prescott empirical model and some statistical methods including linear tendency estimation,Pearson correlation coefficient,R/S analysis and Mann-Kendall test.The results showed that:(1)annual solar radiation exceeded 6300MJ·m-2 at 81.5%of stations over Xizang from 1991 and 2020,meeting the highest abundance levels specified by meteorological industry standard in China,and making it highly suitable for solar energy development.The highest solar radiation were in summer,followed by that of in spring,with the lowest levels occurring in winter.(2)From 1981 to 2024,annual Q over Xizang decreased at a rate of-15.3MJ·m-2·10y-1.Q decreased with 61%-66%of the stations during spring,summer and autumn,with the most notable annual reduction.Conversely,Q showed an increasing trend with 71%of the stations during winter.(3)Compared with the mean value of climate base period from 1991 to 2020,the average annual Q over Xizang was 4.5-114.8MJ·m-2 higher from the 1980s to 2000s,especially in the 1980s.In the 2010s,it was 17.1MJ·m-2 lower.(4)There was a high likelihood of continuous decline in Q during spring,summer and throughout the year in the future(2021-2050).However,the probability of a continuous decreased in Q during autumn and a continuous increase in Q during winter was lower.Abrupt changes in Q occurred during summer,winter and throughout the year in the mid to late 1990s.The turning points for Q during spring and autumn were around 2000 and 2012,respectively.(5)A significant negative correlation existed between Q and both total grain yield and yield per unit area during the crop growing season from 1981 to 2024.Specifically,Q in May had the most substantial impact on the grain yield,with a correlation that reached statistical significance at the 0.001 level.Consequently,a decrease in Q was beneficial,as it was associated with an increased grain yield.(6)The decrease in annual Q could be mainly attributed to the increase of the average low cloud cover over the past 44 years.Overall,the annual total solar radiation over Xizang showed a declining trend,and the likelihood of continuing this downward trajectory in the future was high in the 2010s.Nonetheless,the total solar radiation remains at the highest abundance levels,indicating significant potential for solar energy development.
杜军;黄艳丽;肖卓靖;德庆卓嘎
西藏自治区气候中心,拉萨 850001||中国气象局墨脱大气水分循环综合观测野外科学试验基地/墨脱国家气候观象台/墨脱大气水分循环西藏自治区野外科学观测研究站,墨脱 860700||中国气象局日喀则国家气候观象台,日喀则 857000西藏自治区气象服务中心,拉萨 850001西藏自治区气候中心,拉萨 850001中国气象局日喀则国家气候观象台,日喀则 857000||西藏高原大气环境科学研究所/西藏高原大气环境开放实验室,拉萨 850001
太阳总辐射太阳能资源时空分布变化趋势突变粮食产量
Solar total radiationSolar resourceSpatiotemporal distributionLinear trendClimate mutationGrain yield
《中国农业气象》 2026 (8)
1171-1185,15
2024年西藏自治区重大科技专项项目(XZ202402ZD0006)中国气象科学研究院青藏高原气象科学研究院开放课题(CAMS/ITPM2024K02)
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