这个是2020年华为杯数学建模竞赛赛题(A-F),适合想要参加下一届研究生数学建模的同学来练练手,由于只能上传小于1000M的文件,所以E题中的一个附件视频过大没有上传,可以私信找我要网盘链接哈~
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此竞赛题有解压密码,下载后点击“管理密码”按钮就能看到,包含各种竞赛要求,从A到F全有各种附件说明,竞赛中遇到的各种问题,都可以找这个论坛专家探讨! https://www.shumo.com/forum/forum.php?mod=forumdisplay&fid=113&tdsourcetag=s_pctim_aiomsg 附件数据说明: (1) 加拿大各地天气的历史数据: eng-daily-01011987-12311987.csv; http://climate.weather.gc.ca/historical_data/search_historic_data_e.html(题目只提供了样例数据,更多数据请自行下载。建模中也可以下载其它地区数据进行研究) (2) 海洋表面温度(SST data): sst.mnmean.nc;(data provided by the NOAA/OAR/ESRL PSD, Boulder, Colorado, USA, from their Web site at https://www.esrl.noaa.gov/psd/) https://www.esrl.noaa.gov/psd/data/gridded/using_dods.html(数据可以通过多种方式读取,其中Matlab代码见附件:ReadSSTnc.m) 参考文献 1. Y. Xu, V. Ramanathan, D. G. Victor, Global warming will happen faster than we think, Nature, Vol. 564, 30:32, 2018, Dec. 2. D. Spratt, I. Dunlop, Existential climate-related security risk: A scenario approach, 2019 May, Policy Paper from Breakthrough-National Centre for Climate Restoration 3. C. Quere, R. Andrew, et al, Global carbon budget 2017, Earth Syst. Sci. Data,2018, 405-448 4. I. Medhaug, M. B. Stolpe, E. M. Fischer & R. Knutti, Reconciling controversies about the ‘global warming hiatus’, 2017, Nature 5. G. A. Meehl, A. Hu, B. D. Santer & S. Xie, Contribution of the interdecadal Pacific Oscillation to twentieth-century global surface temperature tends, Nature Climate Change, 6, 1005-1008 (2016) 6. X. Chen & K. K. Tung, Global surface warming enhanced by weak Atlantic overturning circulation, 2018, Nature 7. T. M. Smith, R. W. Reynolds, A high-resolution global sea surface temperature climatology for the 1961-90 base period, J. Climate, 1998, 3320-3323
2021-08-14 10:41:36 180.43MB 数学建模
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2019年研究生数学建模赛题下载。A题:《无线智能传播模型》 B题:《天文导航中的星图识别》 C题:《视觉情报信息分析》 D题:《汽车行驶工况构建》 E题:《全球变暖》 F题:《飞行器航迹快速规划》
2021-08-09 20:37:19 180.47MB 数学建模
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