Journal of Desert Research ›› 2024, Vol. 44 ›› Issue (3): 202-212.DOI: 10.7522/j.issn.1000-694X.2024.00038
Lianxuan Chen1(), Shengkui Cao1,2(
), Guangchao Cao1,2, Yizhen Lei1, Haoran Zhao1, Wenbin Li1
Received:
2024-01-30
Revised:
2024-03-03
Online:
2024-05-20
Published:
2024-06-11
Contact:
Shengkui Cao
CLC Number:
Lianxuan Chen, Shengkui Cao, Guangchao Cao, Yizhen Lei, Haoran Zhao, Wenbin Li. Temporal and spatial response characteristics of evapotranspiration to soil water content in Qinghai Lake Basin[J]. Journal of Desert Research, 2024, 44(3): 202-212.
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URL: http://www.desert.ac.cn/EN/10.7522/j.issn.1000-694X.2024.00038
Fig.5 Spatial distribution of average evapotranspiration and average soil water content during the non-growing (A, C) and growing (B, D) seasons in Qinghai Lake Basin from 2016 to 2020
指标 | 年份 | ||||
---|---|---|---|---|---|
2016 | 2017 | 2018 | 2019 | 2020 | |
蒸散量/mm | 471.77 | 522.57 | 498.58 | 497.41 | 481.91 |
土壤含水量/(m3·m-3) | 0.34 | 0.34 | 0.34 | 0.34 | 0.34 |
Table 1 Temporal variations of annual evapotranspiration and soil water content in Qinghai Lake Basin from 2016 to 2020
指标 | 年份 | ||||
---|---|---|---|---|---|
2016 | 2017 | 2018 | 2019 | 2020 | |
蒸散量/mm | 471.77 | 522.57 | 498.58 | 497.41 | 481.91 |
土壤含水量/(m3·m-3) | 0.34 | 0.34 | 0.34 | 0.34 | 0.34 |
Fig.8 Spatial distribution of correlation coefficients and significance test between evapotranspiration and soil water content at 8-day (A,E), monthly (B,F), non-growing season (C,G) and growing season (D,H) scale in Qinghai Lake Basin
Fig.9 Heatmaps of non-growing season (A,D), growing season (B,E) and annual (C,F) average evapotranspiration and average soil water content in sub-basins of Qinghai Lake Basin
Fig.11 Evapotranspiration and soil water content at different altitudes at 8-day (A), non-growing season (B), growing season (C) and annual scale (D) in Qinghai Lake Basin
1 | 郭林茂,常娟,周剑,等.唐古拉地区活动层水热状况及地气系统能水平衡分析[J].高原气象,2020,39(2):254-265. |
2 | 邴龙飞,苏红波,邵全琴,等.近30年来中国陆地蒸散量和土壤水分变化特征分析[J].地球信息科学学报,2012,14(1):1-13. |
3 | 潘兴瑶,夏军,张橹.土壤水分随机模型支持下的土壤水平衡研究进展[J].资源科学,2008,30(3):460-467. |
4 | 杨胜天,刘昌明.黄河流域土壤水分遥感计算及水循环过程分析[J].中国科学E辑:技术科学,2004,34():1-12. |
5 | 姚檀栋,陈发虎,崔鹏,等.从青藏高原到第三极和泛第三极[J].中国科学院院刊,2017,32(9):924-931. |
6 | 杨娜,汤燕杰,张宁馨,等.基于SMOS、SMAP数据的青藏高原季风及植被生长季土壤水分长消特征研究[J].遥感技术与应用,2022,37(6):1373-1384. |
7 | Li H Q, Wang C Y, Zhang F W,et al.Atmospheric water vapor and soil moisture jointly determine the spatiotemporal variations of CO2 fluxes and evapotranspiration across the Qinghai-Tibetan Plateau grasslands[J].Science of The Total Environment,2021,791:148379. |
8 | Zou M J, Zhong L, Ma Y M,et al.Estimation of actual evapotranspiration in the Nagqu river basin of the Tibetan Plateau[J].Theoretical and Applied Climatology,2018,132(3/4):1039-1047. |
9 | 孙树娇,周秉荣,周华坤,等.青藏高原典型高寒荒漠生长季蒸散及水分消耗特征研究[J].草地学报,2021,29():137-145. |
10 | 王秀英,周秉荣,陈奇,等.青藏高原典型高寒草甸和高寒沼泽湿地植被耗水规律研究[J].高原气象,2022,41(2):338-348. |
11 | Zhang H, Dou R Y.Interannual and seasonal variability in evapotranspiration of alpine meadow in the Qinghai-Tibetan Plateau[J].Arabian Journal of Geosciences,2020,13(18):1-8. |
12 | 张亚春,马耀明,马伟强,等.青藏高原不同下垫面蒸散量及其与气象因子的相关性[J].干旱气象,2021,39(3):366-373. |
13 | Chang Y P, Ding Y J, Zhang S Q,et al.Variations and drivers of evapotranspiration in the Tibetan Plateau during 1982-2015[J].Journal of Hydrology:Regional Studies,2023,47:101366. |
14 | 李小雁,许何也,马育军,等.青海湖流域土地利用/覆被变化研究[J].自然资源学报,2008,23(2):285-296. |
15 | 康利刚,曹生奎,曹广超,等.青海湖沙柳河流域蒸散发时空变化特征[J].干旱区研究,2023,40(3):358-372. |
16 | 汉光昭,曹广超,曹生奎,等.基于Shuttleworth-Wallace模型的小泊湖和沙柳河河源区湿地蒸散发模拟研究[J].湿地科学,2019,17(5):519-526. |
17 | 侯瑶芳,曹生奎,曹广超,等.青海湖沙柳河流域土壤水氢氧稳定同位素组成与土壤贮水量关系[J].中国沙漠,2022,42(6):153-164. |
18 | Ma Y J, Li X Y, Liu L,et al.Evapotranspiration and its dominant controls along an elevation gradient in the Qinghai Lake watershed,northeast Qinghai-Tibet Plateau[J].Journal of Hydrology,2019,575:257-268. |
19 | 刘磊,李小雁,蒋志云,等.青海湖流域不同海拔高度土壤水分时空变化特征[J].资源科学,2017,39(2):263-275. |
20 | 张梦雅,马育军,谢婷.青海湖流域生长季土壤水分空间分布特征研究[J].水利水电技术(中英文),2023,54(3):85-95. |
21 | 刘文玲,马育军,吴艺楠,等.青海湖流域高原鼠兔扰动对不同地表类型土壤水分特征的影响[J].中国水土保持科学,2017,15(2):62-69. |
22 | 马育军,李小雁.青海湖流域典型生态系统土壤水分对降水脉动的响应[J].北京师范大学学报(自然科学版),2016,52(3):356-361. |
23 | 李艳君.2010-2019年青海湖流域蒸散发及对气候变化的响应[J].佳木斯大学学报(自然科学版),2022,40(2):116-118. |
24 | 康利刚.青海湖流域蒸散发时空变化特征及影响因素研究[D].西宁:青海师范大学,2023. |
25 | 吴华武,李小雁,赵国琴,等.青海湖流域降水和河水中δ 18O和δD变化特征[J].自然资源学报,2014,29(9):1552-1564. |
26 | 高黎明,张乐乐.青海湖流域植被盖度时空变化研究[J].地球信息科学学报,2019,21(9):1318-1329. |
27 | 孙永亮,李小雁,汤佳,等.青海湖流域气候变化及其水文效应[J].资源科学,2008(3):354-362. |
28 | 莫皓焜,胡光印,孟惠聪.青海湖地区风沙活动研究进展[J].中国沙漠,2023,43(6):197-209. |
29 | 孔冬冬,张强,黄文琳,等.1982-2013年青藏高原植被物候变化及气象因素影响[J].地理学报,2017,72(1):39-52. |
30 | 上官微,李清亮,石高松.基于站点观测的中国1 km土壤湿度日尺度数据集(2000-2020)[DB].国家青藏高原数据中心,2022. |
31 | Li Q L, Shi G S, Wei S G,et al.A 1 km daily soil moisture dataset over China using in situ measurement and machine learning[J].Earth System Science Data,2022,14:5267-5286. |
32 | 徐建华.现代地理学中的数学方法[M].北京:高等教育出版社,2017:73-82. |
33 | 田一豆,赵先超.基于Markov-PLUS模型的长株潭城市群建设用地扩张模拟及碳排放响应分析[J].生态学报,2024,44(1):129-142. |
34 | 巩炜,胡广录,付鹏程,等.干旱区沙漠-绿洲过渡带固沙植物的土壤水分入渗特征[J].中国沙漠,2020,40(5):200-208. |
35 | 韩艳莉,于德永,陈克龙,等.2000-2018年青海湖流域气温和降水量变化趋势空间分布特征[J].干旱区地理,2022,45(4):999-1009. |
36 | 张晶,左小安,吕朋.土壤水分和养分对沙质草地优势植物叶片氮回收效率的影响[J].中国沙漠,2024,44(1):161-169. |
37 | 王志刚,曹生奎,曹广超,等.气候异常年份青海湖沙柳河流域降水水汽来源对比研究[J].高原气象,2022,41(5):1153-1160. |
38 | 洪光宇,王晓江,刘铁山,等.基于Hydrus-1D模型的毛乌素沙地杨柴(Hedysarum laeve)灌木林土壤含水量模拟[J].中国沙漠,2022,42(6):233-242. |
39 | 康利刚,曹生奎,曹广超,等.青海湖流域地表温度时空变化特征研究[J].干旱区地理,2023,46(7):1084-1097. |
40 | 赵林,程国栋,李述训,等.青藏高原五道梁附近多年冻土活动层冻结和融化过程[J].科学通报,2000(11):1205-1211. |
41 | 王秀英,陈奇,杜华礼,等.基于机器学习的青藏高原高寒沼泽湿地蒸散发插补研究[J].植物生态学报,2023,47(7):912-921. |
42 | 杨泽粟,张宇,张强,等.青藏高原蒸散年际变化及其对西风和季风环流的响应[J].地球物理学报,2022,65(8):2813-2827. |
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