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Volume 39 Issue 5
Oct.  2020
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HU Zeyin, WANG Shijie, BAI Xiaoyong, LI Qin, WU Luhua, CHEN Fei, YANG Yujie, TIAN Shiqi, DENG Yuanhong, LI Chaojun. Analysis of spatial-temporal evolution and trend of the air temperature over Guizhou plateau in the last hundred years[J]. CARSOLOGICA SINICA, 2020, 39(5): 724-736. doi: 10.11932/karst20200509
Citation: HU Zeyin, WANG Shijie, BAI Xiaoyong, LI Qin, WU Luhua, CHEN Fei, YANG Yujie, TIAN Shiqi, DENG Yuanhong, LI Chaojun. Analysis of spatial-temporal evolution and trend of the air temperature over Guizhou plateau in the last hundred years[J]. CARSOLOGICA SINICA, 2020, 39(5): 724-736. doi: 10.11932/karst20200509

Analysis of spatial-temporal evolution and trend of the air temperature over Guizhou plateau in the last hundred years

doi: 10.11932/karst20200509
  • Publish Date: 2020-10-25
  • Under the background of global warming,there are significant regional differences in temperature change. It is very important for ecological security and sustainable development to recognize the characteristics of regional temperature changes. This work builds on CRU,MODIS remote sensing data and observational data from meterological stations. Using trend analysis,cumulative anomalies,one-dimensional linear regression,5 a sliding average,linear trend rate,and R/S analysis, we examine the spatial-temporal evolution of the air temperature in the Guizhou Plateau and its impact on ecological security. The results show that, (1) spatially,the spatial-temporal evolution process of temperature in the Guizhou plateau has regional and seasonal characteristics. Overall spatial air temperature was high in the south and low in the north. Spatial distributions of temperature in the spring and winter were similar, approximately opposite in summer and spring,and not obvious in autumn, mainly affected by elevations and latitudes; (2) Since 1901,the air temperature declined at a rate of -0.31 ℃/century with fluctuations,especially in autumn;(3)Since 1951,it rose up at a rate of 0.71 ℃ /century mainly in autumn;(4)Since 2000,the temperature has been decreasing at a rate of -5.43 °C/century,and it is mainly in winter, showing a certain interannual and seasonal charatceristics. In summary,the temperature in the Guizhou plateau shows a downward trend,impacted by elevations and latitudes. In this context, relevant countermeasures are proposed to provide decision-making support for the rational use of climate resources,regional industrial restructuring,and environmental protection projects in the study area.

     

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  • [1]
    李宗省, 何元庆, 辛慧娟,等. 我国横断山区1960-2008年气温和降水时空变化特征[J]. 地理学报, 2010, 65(5): 563-579.
    [2]
    Deng Y H, Wang S J, Bai X Y, et al. Relationship between Land surface temperature and LUCC and NDVI in typical karst area[J]. Science reports. 2017.
    [3]
    Kael T R, P D Jones , R W Knight . A new perspective on recent global warming: Asymmetric trends of daily maximum and minimum temperature[J]. Bull Amer Meteor Soc, 1993, 74(6) : 1007-1023.
    [4]
    王绍武, 叶瑾琳. 近百年全球气候变暖的分析[J]. 大气科学, 1995(5):545-553.
    [5]
    易湘生, 尹衍雨, 李国胜,等. 青海三江源地区近50年来的气温变化[J]. 地理学报, 2011, 66(11): 1451-1465.
    [6]
    韩翠华, 郝志新, 郑景云. 1951-2010年中国气温变化分区及其区域特征[J]. 地理科学进展, 2013,32(6): 887-896.
    [7]
    严小冬, 金建德, 雷云,等. 贵州近50a气温时空分布特征分析[J]. 贵州气象, 2005, 29(2):6-9.
    [8]
    王绍武, 叶瑾琳. 近百年全球气候变暖的分析. 大气科学, 1995(5):545-553.
    [9]
    Vancutsem C, Ceccato O, Dinku T. Evaluation of MODIS Land Surfance Data to Estimate Air Temperature in Different Ecosystems over Africa[J]. Remote Sensing of Environment, 2009, 114: 449-465.
    [10]
    Mostovoy G V, King R L, Reddy K R. Statistical estimation of daily maximum and minimum air temperatures from MODIS LST data over the state of Mississippi[J]. Giscience & Remote Sensing, 2006, 43 (1): 78-110.
    [11]
    姚俊强,刘志辉,杨青,等. 近130年来中亚干旱区典型流域气温变化及其影响因子[J].地理学报,2014,69(3):291-302.
    [12]
    闻新宇, 王绍武, 朱锦红,等. 英国CRU高分辨率格点资料揭示的20世纪中国气候变化[J]. 大气科学, 2006, 30.
    [13]
    姚永慧, 张百平. 青藏高原气温空间分布规律及其生态意义[J]. 地理研究, 2015, 34(11):2084-2094.
    [14]
    Anderson S. An evaluation of spatial interpolation methods on air temperature in Phoenix, Arizona State [J]. Department of Geography, Arizona State University, 2002.
    [15]
    Florio E N, Lele S R, Chang Y, Cet al. Integrating AVHRR satellite data and NOAA ground observations to predict surface air temperature: A statistical approach[J]. International Journal of Remote Sensing, 2004, 25(15): 2979-2994.
    [16]
    李新, 程国栋, 卢玲. 青藏高原气温分布的空间插值方法比较[J]. 高原气象, 2003, 22(6): 565-574.
    [17]
    Vogt J, Viau A A, Paquet F. Mapping regional air temperature fields using satellite derived surface skin temperatures[J]. International Journal of Climatology, 1997, 17: 1559-1579.
    [18]
    Cameron S E, Parra J L, Jones P G, et al. Very high resolution interpolated climate surfaces for global land areas[J]. International Journal of Climatology, 2005, 25: 1965-1978.
    [19]
    Willmott C J, Robeson S M. Climatologically aided interpolation (CAI) of terrestrial air temperature[J]. International Journal of Climatology, 1995, 15: 221-229.
    [20]
    Hijmans R J, Cameron S E, Parra J L, et al. Very high resolution interpolated climate surfaces for global land areas[J]. International Journal of Climatology, 2005, 25: 1965-1978.
    [21]
    Barrett E C, Curtis L F. Introduction to Environmental Remote Sensing[J]. New York: Chapman and Hall, 1976.
    [22]
    Goward S N. Satellite bioelimatology[J]. J. Clim., 1989, 2: 710-720.
    [23]
    胡泽银,王世杰,白晓永,等.贵州省地表温度的遥感反演评价及时空分异规律[J].生态学杂志,2018,37(9):2794-2807.
    [24]
    姚永慧, 张百平. 基于MODIS数据的青藏高原气温与增温效应估算[J]. 地理学报, 2013, 68(1):95-106.
    [25]
    Cresswell M P, Morse A P, Thomson M C et al. Estimating surface air temperatures, from Meteosat land surface temperatures, using an empirical solar zenith angle model[J]. International Journal of Remote Sensing, 1999, 20(6):1125-1132.
    [26]
    闻新宇,王绍武,朱锦红,等 .英国CRU高分辨率格点资料揭示的20世纪中国气候变化[J].大气科学,2006(5):894-904.
    [27]
    任余龙,石彦军,王劲松,等.英国CRU高分辨率格点资料揭示的近百年来青藏高原气温变化[J].兰州大学学报(自然科学版),2012,48(6):63-68.
    [28]
    谢昌卫,丁永建,刘时银.近50年来长江—黄河源区气候及水文环境变化趋势分[J]. 生态环境, 2004,13(4): 520-523.
    [29]
    Wu L H, Wang S J, Bai X Y,et al. Quantitative assessment of the impacts of climate change and human activities on runoff changes in a typical Karst River Basin, SW China[J]. Science of the Total Environment, 2017, 601-202(1):1449-1465.
    [30]
    葛全胜, 王顺兵, 郑景云. 过去 5000 年中国气温变化序列重建[J]. 自然科学进展, 2006,16(6): 689-696.
    [31]
    王绍武, 闻新宇, 罗勇,等. 近千年中国温度序列的建立[J]. 科学通报, 2007,52(8): 958-964.
    [32]
    闫军辉, 葛全胜, 郑景云. 清代华北地区冬半年温度变化重建与分析[J]. 地理科学进展, 2012,31(11): 1426-1432.
    [33]
    魏凤英. 现代气候统计诊断与预测技术[M]. 北京: 气象出版社, 1999: 49-50.
    [34]
    Hurst H E, Hurst Long term storage capacity of reservoirs Reston: Trans[J]. American Society of Civil Engineers, 1951, 116 (12): 776-808.
    [35]
    喻元, 白建军, 王建博,等. 基于MOD16的关中地区实际蒸散发时空特征分析[J]. 干旱地区农业研究, 2015, 33(3): 245-253.
    [36]
    IPCC. Summary for Policymakers of Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change[J]. Cambridge: Cambridge University Press. 2007, 4-6.
    [37]
    董思言,高学杰.长期气候变化-IPCC第五次评估报告解读[J].气候变化研究进展, 2014, 10(1): 56-59.
    [38]
    周丹, 张勃, 李小亚,等. 1961-2010年中国大陆地面气候要素变化特征分析[J]. 长江流域资源与环境, 2014, 23(4): 549-558.
    [39]
    乔丽, 吴林荣, 张高键. 中国近50a地表温度时空变化特征分析[J]. 水土保持通报, 2015, 35(5): 323-326.
    [40]
    翁笃鸣, 罗哲贤. 山区地形气候[M]. 北京: 气象出版社, 1990:144.
    [41]
    袁淑杰, 谷晓平, 缪启龙,等. 基于DEM的复杂地形下平均气温分布式模拟研究:以贵州高原为例[J]. 自然资源学报,2010, 25(5) : 859-867.
    [42]
    李军, 黄经峰. 山区气温空间分布推算方法评述[J]. 山地学报, 2004, 22(1):126-132.
    [43]
    唐圣钧,程志刚,王东海,等. 基于DEM的贵州山区气温和降水推算方法研究[J]. 西南大学学报(自然科学版), 2015,37(1): 128-137.
    [44]
    吴孔运,蒋忠诚,罗为群.喀斯特石漠化地区生态恢复重建技术及其成果的价值评估:以广西平果县果化示范区为例[J].地球与环境,2007,35(2):159-165.
    [45]
    郭红艳. 石漠化对土壤碳库和碳排放的影响研究[D].北京:中国林业科学研究院,2013.
    [46]
    韩媛媛.西南喀斯特区域峰丛洼地退耕还林(草)的生态效应研究[D].南宁:广西大学, 2009.
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