中国地质科学院水文地质环境地质研究所主办
Groundwater Science and Engineering Limited出版
Zhu Liang, Yang Ming-nan, Liu Jing-tao, Zhang Yu-xi, Chen Xi, Zhou Bing. 2022. Evolution of the freeze-thaw cycles in the source region of the Yellow River under the influence of climate change and its hydrological effects. Journal of Groundwater Science and Engineering, 10(4): 322-334. doi: 10.19637/j.cnki.2305-7068.2022.04.002
Citation: Zhu Liang, Yang Ming-nan, Liu Jing-tao, Zhang Yu-xi, Chen Xi, Zhou Bing. 2022. Evolution of the freeze-thaw cycles in the source region of the Yellow River under the influence of climate change and its hydrological effects. Journal of Groundwater Science and Engineering, 10(4): 322-334. doi: 10.19637/j.cnki.2305-7068.2022.04.002

Evolution of the freeze-thaw cycles in the source region of the Yellow River under the influence of climate change and its hydrological effects

More Information
  • 加载中
  • Figure 1. 

    Figure 2. 

    Figure 3. 

    Figure 4. 

    Figure 5. 

    Figure 6. 

    Figure 7. 

    Figure 8. 

    Figure 9. 

    Figure 10. 

    Table 1.  Variations in annual thawing days of monitoring sections at different depths

    Year0.2 m1.2 m2 m2.4 m
    20131651501410
    20141771481502
    20151741571594
    20161701581435
    201717115715729
    201818415515243
    201918014619048
    下载: 导出CSV
  • Bai YL, Wang F, Liu Y. 2021. Quantitative analysis of runoff evolution and driving factors in the upper reaches of Datong River. South-to-North Water Transfers and Water Science & Technology, 19(1): 103−110. (in Chinese) doi: 10.13476/j.cnki.nsbdqk.2021.0010

    Cao W, Sheng Y, Wu JC, et al. 2021. Soil hydrological process and migration mode influenced by the freeze-thaw process in the activity layer of permafrost regions in Qinghai-Tibet Plateau. Cold Regions Science & Technology, 184: 103236. doi: 10.1016/j.coldregions.2021.103236

    Czerniawska J, Chlachula J. 2020. Climate-change induced permafrost degradation in Yakutia, East Siberia. Arctic, 73(4): 509−528. doi: 10.14430/arctic71674

    Dai JC, Wang GX, Song CL, et al. 2018. Study on the law of runoff retreat in the Three-river headwaters rgion. Resources and Environment in the Yangtze River, 27(6): 1342-1350. (in Chinese)

    Frampton A, Painter SL, Destouni G. 2013. Permafrost degradation and subsurface-flow changes caused by surface warming trends. Hydrogeology Journal, 21(1): 271−280. doi: 10.1007/s10040-012-0938-z

    Gao ZY, Niu FJ, Lin ZJ. 2020. Effects of permafrost degradation on thermokarst lake hydrochemistry in the Qinghai-Tibet Plateau, China. Hydrological Processes, 34(26): 5659−5673. doi: 10.1002/hyp.13987

    Han SB, Li FC, Wang S, et al. 2021. Groundwater resource and eco-environmental problem of the Yellow River Basin. Geology in China, 48(4): 1001−1019. (in Chinese)

    Jin HJ, He RX, Cheng GD, et al. 2009. Changes in frozen ground in the source area of the Yellow River on the Qinghai-Tibet Plateau, China, and their eco-environmental impacts. Environmental Research Letters, 4(4): 045206. doi: 10.1088/1748-9326/4/4/045206

    Li WZ, Liu W, Zhang TF, et al. 2018. The contribution rate of climate and human activities on runoff change in the source regions of Yellow River. Journal of Glaciology and Geocryology, 40(5): 958−992. (in Chinese) doi: 10.7522/j.issn.1000-0240.2018.0312

    Li ZJ, Li ZX, Song LL, et al. 2020. Characteristic and factors of stable isotope in precipitation in the source region of the Yangtze River. Agricultural and Forest Meteorology, 281: 107825. doi: 10.1016/j.agrformet.2019.107825

    Liu BK, Li L, Du YE, et al. 2016. Causes of the outburst of Zonag Lake in Hoh Xil, Tibetan Plateau, and its impact on surrounding environment. Journal of Glaciology and Geocryology, 38(2): 305−311. (in Chinese) doi: 10.7522/j.issn.1000-0240.2016.0033

    Lu ZX, Feng Q, Zou SB, et al. 2020. The heterogeneity of hydrometeorological changes during the period of 1961-2016 in the source region of the Yellow River, China. Sciences in Cold and Arid Regions, 12(2): 104−118.

    Ma Q, Jin HJ, Victor F B, et al. 2019. Impacts of degrading permafrost on streamflow in the source area of Yellow River on the Qinghai-Tibet Plateau, China. Advances in Climate Change Research, 10(4): 225−239. doi: 10.1016/j.accre.2020.02.001

    Oliva M, Pereira P, Antoniades D. 2018. The environmental consequences of permafrost degradation in a changing climate. Science of the Total Environment, 616-617(1): 435−437. doi: 10.1016/j.scitotenv.2017.10.285

    Qiao G, Yu FD, Wang WK, et al. 2022. Thermodynamic transport mechanism of water freezing-thawing in the vadose zone in the alpine meadow of the Tibet Plateau. Journal of Groundwater Science and Engineering, 10(3): 302−310. doi: 10.19637/j.cnki.2305-7068.2022.03.008

    Shen HY, Li J, Wang ZH, et al. 2022. Water resources utilization and eco-environment problem of Fenhe River, branch of Yellow river. Geology in China, 49(4): 1127−1138. (in Chinese)

    Sheng Y, Ma S, Cao W, et al. 2020. Spatiotemporal changes of permafrost in the Headwater Area of the Yellow River under a changing climate. Land Degradation & Development, 31(1): 133−152. doi: 10.1002/ldr.3434

    Song CL, Wang GX, Mao TX, et al. 2020. Linkage between permafrost distribution and river runoff changes across the Arctic and the Tibetan Plateau. Science China Earth Sciences, 63(2): 292−302. doi: 10.1007/s11430-018-9383-6

    Sun YS, Liu T, Li Y. 2021. Analysis on the consistency of precipitation and runoff in the source area of the Yellow River and its influencing factors. Yellow River, 43(10): 51−55,101. (in Chinese)

    Wan CW, Gibson JJ, Shen SC, et al. 2019. Using stable isotopes paired with tritium analysis to assess thermokarst lake water balances in the source area of the Yellow River, northeastern Qinghai-Tibet Plateau, China. Science of the Total Environment, 689: 1276−1292. doi: 10.1016/j.scitotenv.2019.06.427

    Wang GX, Mao TX, Chang J, et al. 2017. Processes of runoff generation operating during the spring and autumn seasons in a permafrost catchment on semi-arid plateaus. Journal of Hydrology, 550: 307−317. doi: 10.1016/j.jhydrol.2017.05.020

    Walvoord MA, Voss CI, Wellman TP. 2012. Influence of permafrost distribution on groundwater flow in the context of climate-driven permafrost thaw: Example from Yukon Flats Basin, Alaska, United States. Water Resources Research, 48(7): 1−17. doi: 10.1029/2011WR011595

    Wang DX, Tian SM, Jiang SQ, et al. 2020. Research progress of the evolution of runoff in the source area of the Yellow River. Yellow River, 42(9): 90−95. (in Chinese)

    Wang Y, Chen RS, Xia ZL, et al. 2020. The evaluation of ecosystem service value and its spatial change in the Yellow River Basin and suggestions from the ecological geology perspectives. Geological Bulletin of China, 39(10): 1650−1662. (in Chinese)

    Wu AM, Hao AB, Guo HP, et al. 2020. Main progress and prospect for China’s hydrogeological survey. Journal of Groundwater Science and Engineering, 8(3): 195−209.

    Xu R, Hu HC, Tian FQ, et al. 2019. Projected climate change impacts on future streamflow of the Yarlung Tsangpo-Brahmaputra River. Global & Planet Change, 175: 144−159. doi: 10.1016/j.gloplacha.2019.01.012

    Yang YZ, Wu QB, Jin HJ, et al. 2019. Delineating the hydrological processes and hydraulic connectivities under permafrost degradation on Northeastern Qinghai-Tibet Plateau, China. Journal of Hydrology, 569: 359−372. doi: 10.1016/j.jhydrol.2018.11.068

    You QL, Kang SC, Li JD, et al. 2021. Several research frontiers of climate change over the Tibetan Plateau. Journal of Glaciology and Geocryology, 43(3): 885−901. (in Chinese) doi: 10.7522/j.issn.1000-0240.2021.0029

    Zeng L, Zhao GZ. 2022. Groundwater response of loess slope during seasonal freeze-thaw process. Geological Bulletin of China, 41(7): 1300−1307. (in Chinese)

    Zhang GQ, Wang MM, Zhou T, et al. 2022. Progress in remote sensing monitoring of lake area, water level, and volume changes on the Tibetan Plateau. Journal of Remote Sensing, 26(1): 115−125. (in Chinese)

    Zhang JY, Liu JF, Jin JL, et al. 2019. Evolution and trend of Water Resources in Qinghai-Tibet Plateau. Bulletin of Chinese Academy of Sciences, 34(11): 1264−1273. (in Chinese)

    Zhang SQ, Wang YG, Zhao YZ, et al. 2004. Permafrost degradation and its environmental sequent in the source regions of the Yellow River. Journal of Glaciology and Geocryology, 26(1): 1−6. (in Chinese)

    Zhang SQ, Pu ZC, Li JL, et al. 2013. Response of the maximum depth of seasonal freezing to the cumulated negative temperature. Journal of Glaciology and Geocryology, 35(6): 1419−1427. (in Chinese) doi: 10.7522/j.issn.1000-0240.2013.0157

    Zhu Y, Liu SY, Yi Y, et al. 2021. Spatio-temporal variations in terrestrial water storage and its controlling factors in the Eastern Qinghai-Tibet Plateau. Hydrology Research, 52(1): 323−338. doi: 10.2166/nh.2020.039

    Zhu L, Liu JT, Yang MN, et al. 2021. Evolutionary trend of water cycle in Beichuan River Basin of China under the influence of vegetation restoration. Journal of Groundwater Science and Engineering, 9(3): 202−211. doi: 10.19637/j.cnki.2305-7068.2021.03.003

  • 加载中

(10)

(1)

计量
  • 文章访问数:  1272
  • PDF下载数:  15
  • 施引文献:  0
出版历程
收稿日期:  2022-04-12
录用日期:  2022-10-10
刊出日期:  2022-12-31

目录