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5 期 徐新妍等:川西北生态示范区及周边地区极端气温指数时空变化分布特征 1313
参考文献(References): 1006-7639(2021)-01-0028.
胡芩, 齐冬梅, 周长艳, 等, 2024. 若尔盖生态区 CMIP6 高分辨率
Beniston M, Rebetez M, 1996. Regional behavior of minimum tem‐ 模式气候模拟状况及未来多情景预估[J]. 高原气象, 1-13.
peratures in Switzerland for the period 1979-1993[J]. Theoreti‐ [2024-12-15]. DOI: 10. 7522/j. issn. 1000-0534. 2024. 00055.
cal and Applied Climatology, 53(4): 231-243. DOI: 10. 1007/ Hu Q, Qi D M, Zhou C Y, et al, 2024. Climate simulation and
BF00871739. future scenario projection for the Zoige ecological region by
Dong D H, Huang G, Qu X, et al, 2015. Temperature trend-altitude CMIP6 high-resolution models[J]. Plateau Meteorology, 1-13.
relationship in China during 1963-2012[J]. Theoretical and Ap‐ [2024-12-15]. DOI: 10. 7522/j. issn. 1000-0534. 2024. 00055.
plied Climatology, 122: 285-294. DOI: 10. 1007/s00704-014- 李宛鸿, 徐影, 2023. CMIP6 模式对青藏高原极端气温指数模拟能
1286-9. 力评估及预估[J]. 高原气象, 42(2): 305-319. DOI: 10. 7522/
Isa Z, Sawa B A, Abdussalam A F, et al, 2023. Impact of climate j. issn. 1000-0534. 2022. 00032. Li W H, Xu Y, 2023. Evalua‐
change on climate extreme indices in Kaduna River basin, Nigeria tion and projection of extreme temperature indices over the Qing‐
[J]. Environmental Science and Pollution Research, 1-24. DOI: hai-Xizang Plateau by CMIP6 Models[J]. Plateau Meteorology,
10. 1007/s11356-023-27821-5. 42(2): 305-319. DOI: 10. 7522/j. issn. 1000-0534. 2022.
Li Z X, He Y Q, Theakstone W H, et al, 2012. Altitude dependency 00032.
of trends of daily climate extremes in southwestern China, 1961- 李志刚, 娄嘉慧, 史冲, 2024. 1960-2020 年河南省极端降水时空演
2018[J]. Journal of Geographical Sciences, 22(3): 416-430. 变特征[J]. 华北水利水电大学学报(自然科学版), 45(4): 16-
DOI: 10. 1007/s11442-012-0936-z. 26. DOI: 10. 19760/j. ncwu. zk. 2024038. Li Z G, Lou J H, Shi
Revadekar J V, Hameed S, Collins D, et al, 2013. Impact of altitude C, 2024. Spatial and temporal evolution characteristics of ex‐
and latitude on changes in temperature extremes over South Asia treme precipitation in Henan from 1960 to 2020[J]. Journal of
during 1971-2000[J]. International Journal of Climatology, 33 North China University of Water Resources and Electric Power
(1): 199-209. DOI: 10. 1002/joc. 3418. (Natural Science Edition), 45(4): 16-26. DOI: 10. 19760/j. nc‐
Tye M R, Dagon K, Molina M J, et al, 2022. Indices of extremes: wu. zk. 2024038.
geographic patterns of change in extremes and associated vegeta‐ 刘翠霞, 邓海明, 2015. 阿坝高原近 47 年气温变化特征分析[J]. 安
tion impacts under climate intervention[J]. Earth System Dynam‐ 徽农业科学, 43(1): 153-156. DOI: 10. 13989/j. cnki. 0517-
ics, 13(3): 1233-1257. DOI: 10. 5194/egusphere-2022-1. 6611. 2015. 01. 102. Liu C X, Deng H M, 2015. Analysis of vari‐
You Q L, Kang S C, Nick P, et al, 2010. Relationship between tem‐ ation characteristics of temperature in Aba Plateau in recent 47
perature trend magnitude, elevation and mean temperature in the years[J]. Journal of Anhui Agri. Sci. , 43(1): 153-156. DOI:
Tibetan Plateau from homogenized surface stations and reanalysis 10. 13989/j. cnki. 0517-6611. 2015. 01. 102.
data[J]. Global and Planetary Change, 71: 124-133. DOI: 刘若岚, 袁淑杰, 阮迪陈, 等, 2023. 四川省水稻移栽--分蘖期低温
10. 1016/j. gloplacha. 2010. 01. 020. 连阴雨时空分布[J]. 中国农学通报, 39(22): 115-123. Liu R
冯波, 孟宪红, 杨显玉, 等, 2024. 第六次国际耦合模式比较计划 L, Yuan S J, Ruan D C, et al, 2023. Temporal and spatial distri‐
(CMIP6)中青藏高原气温和降水的适用性评估及极端气候事 bution of low temperature and continuous rain during rice trans‐
件 变 化 预 估[J]. 高 原 气 象 , 1-14.[2024-12-15]. DOI: 10. planting to tillering stage in Sichuan Province[J]. Chinese Agri‐
7522/j. issn. 1000-0534. 2024. 00068. Feng B, Meng X H, Yang cultural Science Bulletin, 39(22): 115-123.
X Y, et al, 2024. Temperature and precipitation assessment and 卢珊, 胡泽勇, 沈姣姣, 等, 2025. 近 62 年我国极端高温事件的时
extreme climate events prediction based on the coupled model in‐ 空变化特征[J]. 高原气象, 44 (1): 201-213. DOI: 10. 7522/j.
tercomparison project phase 6 over the Qinghai-Xizang Plateau issn. 000-0534. 2024. 00058. Lu S, Hu Z, Shen J J, et al, 2025.
[J]. Plateau Meteorology, 1-14.[2024-12-15]. DOI: 10. 7522/ Spatial-temporal Variations of Extreme Heat Events over China in
j. issn. 1000-0534. 2024. 00068. Recent 62 Years[J]. Plateau Meteorology, 44 (1): 201-213.
冯磊, 2020. 川渝地区极端气候变化特征及其对 NDVI 的影响研究 DOI: 10. 7522/j. issn. 1000-0534. 2024. 00058.
[D]. 兰 州 : 西 北 师 范 大 学 . DOI: 10. 27410/d. cnki. gxbfu. 梅静, 王建, 何亮, 等, 2019. 川西甘孜州 1961-2015 年气温和降水
2020. 001021. Feng L, 2020. Study on the characteristics of ex‐ 时空变化特征研究[J]. 山地学报, 37(2): 161-172. DOI: 10.
treme climate change in Sichuan-Chongqing region and its impact 16089/j. cnki. 1008-2786. 000410. Mei J, Wang J, He L, et al,
on NDVI[D]. Lanzhou: Northwest Normal University. DOI: 2019. Spatio-temporal variations of temperature and precipitation
10. 27410/d. cnki. gxbfu. 2020. 001021. in Ganzi of western Sichuan in China during 1961-2015[J].
冯晓莉, 多杰卓么, 李万, 等, 2021. 1961-2018 年青海高原极端气 Mountain Research, 37(2): 161-172. DOI: 10. 16089/j. cnki.
温指数时空变化特征[J]. 干旱气象, 39(1): 28-37. DOI: 10. 1008-2786. 000410.
11755/j. issn. 1006-7639(2021)-01-0028. Feng X L, Duo J Z 孙蕊, 邓彪, 王顺久, 等, 2023. 2022年夏季四川省区域性高温和干
M, Li W, et al, 2021. Spatiotemporal variations of extreme tem‐ 旱过程监测评估[J]. 高原山地气象研究, 43(2): 72-80. DOI:
perature indices over Qinghai Plateau during 1961-2018[J]. Jour‐ 10. 3969/j. issn. 1674-2184. 2023. 02. 010. Sun R, Deng B,
nal of Arid Meteorology, 39(1): 28-37. DOI: 10. 11755/j. issn. Wang S J, et al, 2023, Monitoring and assessment of regional

