Page 68 - 《高原气象》2025年第5期
P. 68

高     原      气     象                                 44 卷
              1186
                 DOI: 10. 12202/j. 0476-0301. 2023133.             Statistics  and  Decision-Making(3):  17-21. DOI:  10. 13546/j.
             韩振宇, 童尧, 高学杰, 等, 2018. 分位数映射法在 RegCM4中国气              cnki. tjyjc. 000004.
                 温模拟订正中的应用[J]. 气候变化研究进展, 14(4): 331-            王丹, 黄少妮, 高红燕, 等, 2016. 递减平均法对陕西 SCMOC 精细
                 340. DOI:  10. 12006/j. issn. 1673-1719. 2017. 156. Han  Z  Y,   化温度预报的订正效果[J]. 干旱气象, 34(3): 575-583. DOI:
                 Tong Y, Gao X J, et al, 2018. Correction based on quantile map‐  10. 11755/j. issn. 1006-7639(2016)-03-0575. Wang D, Huang
                 ping  for  temperature  simulated  by  the  RegCM4[J]. Climate   S N, Gao H Y, et al, 2016. Analysis on errors of SCMOC re‐
                 Change  Research,  14(4):  331-340. DOI:  10. 12006/j. issn.  fined  guidance  temperature  prediction  corrected  by  the  decaying
                 1673-1719. 2017. 156.                             averaging method in Shaanxi Province[J]. Journal of Arid Meteo‐
             李宛鸿, 徐影, 2023. CMIP6 模式对青藏高原极端气温指数模拟能                 rology,  34(3):  575-583. DOI:  10. 11755/j. issn. 1006-7639
                 力评估及预估[J]. 高原气象, 42(2): 305-319. DOI: 10. 7522/  (2016)-03-0575.
                 j. issn. 1000-0534. 2022. 00032. Li W H, Xu Y, 2023. Evalua‐  王怀军, 曹蕾, 俞嘉悦, 等, 2021. 基于 EOF 分析和 GAMLSS 模型
                 tion and projection of extreme temperature indices over the Qing‐  的淮河流域极端气候事件非平稳特征[J]. 灌溉排水学报, 40
                 hai-Xizang Plateau by CMIP6 models[J]. Plateau Meteorology,   (5): 125-134. DOI: 10. 13522/j. cnki. ggps. 2020299. Wang H
                 42(2):  305-319. DOI:  10. 7522/j. issn. 1000-0534. 2022.  J, Cao L, Yu J Y, et al, 2021. Using EOF and GAMLSS to ana‐
                 00032.                                            lyze  nonstationary  extreme  climate  events  in  Huai  River  Basin
             刘晓琼, 孙曦亮, 刘彦随, 等, 2020. 基于 REOF-EEMD 的西南地区           [J]. Journal of Irrigation and Drainage 40(5): 125-134. DOI:
                 气候变化区域分异特征[J]. 地理研究, 39(5): 1215-1232.            10. 13522/j. cnki. ggps. 2020299.
                 DOI: 10. 11821/dlyj020190387. Liu X Q, Sun X L, Liu Y S, et   王佐鹏, 张颖超, 熊雄, 等, 2019. 基于EOF的南京气温变化特征及
                 al, 2020. Spatial division of climate change and its evolution char‐  热岛效应研究[J]. 陕西气象,(6): 29-33. Wang Z P, Zhang Y
                 acteristics in Southwest China based on REOF-EEMD[J]. Geo‐  C, Xiong X, et al, 2019. Temperature change characteristics and
                 graphical   Research,  39(5):  1215-1232. DOI:  10. 11821/  heat island effect in Nanjing based on EOF[J]. Shaanxi Meteorol‐
                 dlyj020190387.                                    ogy,(6): 29-33.
             罗那那, 巴特尔·巴克, 吴燕锋, 2017. 基于集合经验模态分解北疆               魏莹, 2022. 1980-2018 年青藏高原气温时空变化特征及其未来预
                 降水多尺度变化特征[J]. 水土保持研究, 24(4): 362-367.             估[D]. 西 安 :  陕 西 师 范 大 学 . DOI:  10. 27292/d. cnki. gsx‐
                 DOI: 10. 13869/j. cnki. rswc. 2017. 04. 057. Luo N N, Batur B,   fu. 2020. 000272. Wei  Y,  2022. Temporal  and  spatial  variation
                 Wu Y F, 2017. Precipitation multi-scale characteristics by ensem‐  characteristics of temperature over the Tibetan Plateau from 1980
                 ble  empiricalare  mode  decomposition  in  Northern  Xinjiang[J].  to  2018  and  its  future  projections[D]. Xi'an:  Shaanxi  Normal
                 Research  of  Soil  and  Water  Conservation,  24(4):  362-367.  University. DOI: 10. 27292/d. cnki. gsxfu. 2020. 000272.
                 DOI: 10. 13869/j. cnki. rswc. 2017. 04. 057.   夏志明, 廖凯涛, 郭利平, 等, 2023. 基于 EOF和 MK趋势分析的赣
             孟雅丽, 段克勤, 尚溦, 等, 2022. 基于 CMIP6 模式数据的 1961-           江流域降水时空分布格局[J]. 水土保持研究, 30(5): 223-
                 2100 年青藏高原地表气温时空变化分析[J]. 冰川冻土, 44                 233+249. DOI: 10. 13869/j. cnki. rswc. 2023. 05. 034. Xia Z M,
                (1):  24-33. DOI:  10. 7522/j. issn. 1000-0240. 2022. 0017.  Liao K T, Guo L P, et al, 2023. Spatiotemporal distribution pat‐
                 Meng Y L, Duan K Q, Shang W, et al, 2022. Analysis on spatio-  tern of precipitation in Gan River Basin based on EOF and MK
                 temporal variations of near-surface air temperature over the Tibet‐  trend analysis [J]. Research of Soil and Water Conservation, 30
                 an Plateau from 1961 to 2100 based on CMIP6 models’ data[J].  (5): 223-233+249. DOI: 10. 13869/j. cnki. rswc. 2023. 05. 034.
                 Journal  of  Glaciology  and  Geocryology,  44(1):  24-33. DOI:   颜鹏程, 侯威, 钱忠华, 等, 2012. 基于贝叶斯理论的全球海温异常
                 10. 7522/j. issn. 1000-0240. 2022. 0017.          对 500 hPa 温度场的影响分析[J]. 物理学报, 61(13): 541-
             潘保田, 李吉均, 1996. 青藏高原: 全球气候变化的驱动机与放大                   548. Yan P C, Hou W, Qian Z H, et al, 2012. The analysis of
                 器-Ⅲ. 青藏高原隆起对气候变化的影响[J]. 兰州大学学报(自                  the infuence of globe SST anomalies on 500 hPa temperature field
                 然科学版),(1): 108-115. DOI: 10. 13885/j. issn. 0455-2059.    based on Bayesian[J]. Acta Physica Sinica, 61(13): 541-548.
                 1996. 01. 024. Pan B T, Li J J, 1996. Qinghai-Tibetan Plateau: a   杨金虎, 张强, 杨博成, 等, 2023. 黄河上游暖湿化的多时间尺度特
                 driver and amplifier of global climate change-Ⅲ. The effects of   征及对生态植被的影响[J]. 高原气象, 42(4): 1018-1030.
                 the uplift of Qinghai-Tibetan Plateau on climate changes[J]. Jour‐  DOI:  10. 7522/j. issn. 1000-0534. 2022. 00087. Yang  J  H,
                 nal  of  Lanzhou  University (Natural  Science),(1):  108-115.  Zhang Q, Yang B C, et al, 2023. The multi-time scale character‐
                 DOI: 10. 13885/j. issn. 0455-2059. 1996. 01. 024.  istics  and  impacts  on  ecological  vegetation  of  warming  and  hu‐
             宋超辉, 孙安健, 1995. 非均一性气温气候序列订正方法的研究                     midification in the Upper Yellow River[J]. Plateau Meteorology,
                [J]. 高原气象,(2): 88-93. Song C H, Sun A J, 1995. The re‐  42(4):  1018-1030. DOI:  10. 7522/j. issn. 1000-0534. 2022.
                 search on adjusting inhomogeneity temperature series[J]. Plateau   00087.
                 Meteorology,(2): 88-93.                        杨明鑫, 肖天贵, 李勇, 等, 2022. CMIP6模式对我国西南地区夏季
             田立法, 2014. 关于非平稳数据“伪回归”的解析[J]. 统计与决策                  气候变化的模拟和预估[J]. 高原气象, 41(6): 1557-1571.
                (3):  17-21. DOI:  10. 13546/j. cnki. tjyjc. 000004. Tian  L  F,   DOI: 10. 7522/j. issn. 1000-0534. 2021. 00119. Yang M X, Xiao
                 2014. Analysis of "pseudo-regression" of non-stationary data[J].  T  G,  Li  Y,  et  al,  2022. Evaluation  and  projection  of  climate
   63   64   65   66   67   68   69   70   71   72   73