Page 78 - 《高原气象》2025年第6期
P. 78
高 原 气 象 44 卷
1486
Zewde N T, Denboba M A, Tadesse S A, et al, 2024. Predicting run‐ on SUFI-2 Algorithm in Heihe river basin of Shaanxi Province
off and sediment yields using soil and water assessment tool [J]. Agricultural Research in the Arid Areas, 32(5): 213-
(SWAT) model in the Jemma Subbasin of Upper Blue Nile, Cen‐ 217+222.
tral Ethiopia[J]. Environmental Challenges, 14: 100806. 罗映雪, 徐长春, 楚智, 等, 2020. CN05. 1 气象数据在流域水文模
Zhou L, Jiang S, Guo J, et al, 2024. Comprehensive comparison of 拟中的应用——以新疆开都河流域为例[J]. 气候变化研究进
LSTM and VIC model in river ecohydrological regimes alteration 展, 16(3): 287-295. Luo Y X, Xu C C, Chu Z, et al, 2020.
attribution: A case study in Laohahe basin, China[J]. Journal of Application of CN05. 1 meteorological data in watershed hydro‐
Hydrology: Regional Studies, 52: 101722. logical simulation: a case study in the upper reaches of Kaidu
陈泽霞, 2023. 气候变化背景下石羊河流域出山径流模拟与预测 River basin [J]. Climate Change Research, 16 (3): 287-295.
[D]. 兰州: 兰州交通大学 . DOI: 10. 27205/d. cnki. gltec. 2023. 田昊玮, 陈伏龙, 龙爱华, 等, 2023. 博尔塔拉河源流区径流对气候
001732. Chen Z X, 2023. Simulation and Projection of Mountain‐ 变化的响应及预测[J]. 干旱区地理, 46(9): 1432-1442. Tian
ous Runoff in the Shiyang River Basin under Climate Change H W, Chen F L, Long A H, et al, 2023. Response and predic‐
[D]. Lanzhou: Lanzhou Jiaotong University. DOI: 10. 27205/d. tion of runoff to climate change in the headwaters of the Bortala
cnki. gltec. 2023. 001732. River[J], Arid Land Geography, 46(9): 1432-1442.
江楠, 倪福全, 邓玉, 等, 2024. 基于 CMIP6 的岷沱江流域径流预 王博, 郑淋峰, 任春坪, 2024. SWAT+模型在郪江流域的适用性探
估[J/OL]. 水 生 态 学 杂 志 , 1-13. DOI: 15928/j. 1674-3075. 究[J]. 水电能源科学, 42(9): 21-24+10. DOI: 10. 20040/j.
202309220262. Jiang N, Ni F Q, Deng Y, et al, 2024. Runoff cnki. 1000-7709. 2024. 20231708. Wang B, Zheng L F, Ren C
prediction of Min-Tuo River Basin based on CMIP6[J/OL]. Jour‐ P, 2024. Analysis of surface runoff in Zhengzhou City under ex‐
nal of Hydroecology, 1-13. DOI: 15928/j. 1674-3075. treme rainfall conditions[J]. Water Resources and Power, 42
202309220262. (9): 21-24+10. DOI: 10. 20040/j. cnki. 1000-7709. 2024.
康文东, 倪福全, 邓玉, 等, 2023. 乌江流域蓝绿水对气候和土地利 20231708.
用变化的响应[J]. 农业工程学报, 39(19): 131-140. DOI: 10. 吴佳, 高学杰, 2013. 一套格点化的中国区域逐日观测资料及与其
11975/j. issn. 1002-6819. 202304138. Kang W D, NI F Q, Deng 它资料的对比[J]. 地球物理学报, 56(4): 1102-1111. Wu J,
Y, et al, 2023. Response of blue and green water to climate and Gao X J, 2013. A gridded daily observation dataset over China re‐
land use changes: A study in the Wujiang River Basin, China[J]. gion and comparison with the other datasets[J]. Chinese Journal
Transactions of the Chinese Society of Agricultural Engineering of Geophysics, 56(4): 1102-1111.
(Transactions of the CSAE), 39(19): 131-140. DOI: 10. 11975/ 易磊, 陈富洪, 韩积斌, 等, 2024. 基于 SWAT 模型的格尔木河上游
j. issn. 1002-6819. 202304138. 分布式水文模拟和径流预测[J]. 盐湖研究, 32(3): 1-10. Yi
刘睿, 霍艾迪, Chen X H, 等, 2014. 基于 SUFI-2 算法的 SWAT 模 L, Chen F H, Han J B, et al, 2024. SWAT-based distributed hy‐
型在陕西黑河流域径流模拟中的应用[J]. 干旱地区农业研究, drologic simulation and runoff prediction in the upper Golmud
32(5): 213-217+222. Liu R, Huo A D, Chen X H, et al, 2014. River Watershed[J]. Journal of Salt Lake Research, 32(3): 1-
Application of the SWAT model into the runoff simulation based 10. DOI: 10. 3724/j. yhyj. 2024012.

