Remote Sensing Technology and Application, Volume. 39, Issue 4, 1026(2024)

Spatial and Temporal Variation of Qinghai Lake in Two Seasons Monitored by Remote Sensing

Xingsheng XIA*, Jianjun CAI, Lingang WANG, Yuxi ZHONG, and Yaozhong PAN
Author Affiliations
  • Academy of Plateau Science and Sustainability, Qinghai Normal University, Xining810016, China
  • show less
    References(36)

    [1] Dongsheng HU. Investigation and study on lake resources in Hoh Xil Area. Arid Land Geography, 15, 50-58(1992).

    [2] J W HALL, D GREY, D GARRICK et al. Coping with the curse of freshwater variability. Science, 346, 429-430(2014).

    [3] M G TULBURE, M BROICH, S V STEHMAN et al. Surface water extent dynamics from three decades of seasonally continuous Landsat time series at subcontinental scale in a semi-arid region. Remote Sensing of Environment, 178, 142-157(2016).

    [4] Song FENG, Maocang TANG, Lusheng ZHOU. Water level change of Qinghai Lake in recent 600 years. Journal of Lake Sciences, 12, 205-210(2000).

    [5] Lingling LI. Application of remote sensing technology in water resources monitoring. Science and Technology Innovation, 52-53(2019).

    [6] J F PEKEL, A COTTAM, N GORELICK et al. High-resolution mapping of global surface water and its long-term changes. Nature, 540, 418-422(2016).

    [7] Yunyao DU, Chenghu ZHOU. Automatic extraction method of remote sensing information of water body. National Remote Sensing Bulletin, 2, 3-5(1998).

    [8] B C GAO. NDWI—A normalized difference water index for remote sensing of vegetation liquid water from space. Remote Sensing of Environment, 58, 257-266(1996).

    [9] Hanqin XU. Research on extracting water information using improved normalized difference water index (MNDWI). National Remote Sensing Bulletin, 9, 589-595(2005).

    [10] G L FEYISA, H MEILBY, R FENSHOLT et al. Automated Water Extraction Index: A new technique for surface water mapping using Landsat imagery. Remote Sensing of Environment, 140, 23-35(2014).

    [11] Y LI, X GONG, Z GUO et al. An index and approach for water extraction using Landsat–OLI data. International Journal of Remote Sensing, 37, 3611-3635(2016).

    [12] X WANG, X XIAO, Z ZOU et al. Tracking annual changes of coastal tidal flats in China during 1986–2016 through analyses of Landsat images with Google Earth Engine. Remote Sensing of Environment, 238, 110987(2020).

    [13] Chengfeng LUO, Changjun XU, Yinxuan CAO et al. Remote sensing monitoring of water surface area change of Qinghai Lake from 1974 to 2016. Journal of Lake Sciences, 29, 1245-1253(2017).

    [14] Miaomiao QI, Xiaojun YAO, Shiyin LIU et al. Dynamic changes of Qinghai Lake shoreline from 1973 to 2018. Journal of Lake Sciences, 32, 573-586(2020).

    [15] Zhongkui FENG, Xiaohui LI. Study on remote sensing monitoring of water area change and lake shore evolution of Qinghai Lake in recent 20 years. Journal of Paleogeography, 8, 131-141(2006).

    [16] Jinlong ZHANG, Ying CHEN, Jinsong GE et al. Land use/cover change and land resource management in the area around Qinghai Lake from 1977 to 2010. Journal of Desert Research, 33, 1256-1266(2013).

    [17] Liming GAO, Lele ZHANG, Kelong CHEN et al. Photosynthetic effective radiation characteristics of Alpine Wetland in Qinghai Lake Basin. Arid Zone Research, 35, 50-56(2018).

    [18] Xuemin CHEN, Bing HAN, Lili WANG et al. Analysis on the correlation between total phosphorus, water temperature, mineralization and chlorophyll-a in Qinghai Lake,China. Journal of Agro-Environment Science, 32, 333-337(2013).

    [19] Ning MA, S JOZSEF, Yinsheng ZHANG et al. Terrestrial eva-potranspiration dataset across China(1982-2017). National Tibetan Plateau Data Center(2019).

    [20] Yunfeng HU, Lingjie SHANG, Qianli ZHANG et al. Analysis of land change pattern and driving mechanism in Beijing since 1990 based on GEE platform. Remote Sensing Technology and Application, 33, 573-583(2018).

    [21] Z ZOU, J DONG, M A MENARGUEZ et al. Continued decrease of open surface water body area in Oklahoma during 1984-2015. Science of the Total Environment, 595, 451-460(2017).

    [22] Z ZOU, X XIAO, J DONG et al. Divergent trends of open-surface water body area in the contiguous United States from 1984 to 2016. Proceedings of the National Academy of Sciences, 115, 3810-3815(2018).

    [23] H XU. Modification of normalised difference water index (NDWI) to enhance open water features in remotely sensed imagery. International Journal of Remote Sensing, 27, 3025-3033(2006).

    [24] L JI, L ZHANG, B WYLIE. Analysis of dynamic thresholds for the normalized difference water index. Photogrammetric Engineering & Remote Sensing, 75, 1307-1317(2009).

    [25] C VERPOORTER, T KUTSER, L TRANVIK. Automated mapping of water bodies using Landsat multispectral data. Limnology and Oceanography:Methods, 10, 1037-1050(2012).

    [26] H XIA, J ZHAO, Y QIN et al. Changes in water surface area during 1989–2017 in the Huai River Basin using Landsat data and Google earth engine. Remote Sensing, 11, 1824(2019).

    [27] B CHEN, X XIAO, X LI et al. A mangrove forest map of China in 2015: Analysis of time series Landsat 7/8 and Sentinel-1A imagery in Google Earth Engine cloud computing platform. ISPRS Journal of Photogrammetry and Remote Sensing, 131, 104-120(2017).

    [28] C HOMER, J DEWITZ, L YANG et al. Completion of the 2011 National Land Cover Database for the conterminous United States–representing a decade of land cover change information. Photogrammetric Engineering & Remote Sensing, 81, 345-354(2015).

    [29] Baokang LIU, Xuli WEI, Yü'e DU et al. Dynamics of Qinghai Lake area based on environmental mitigation satellite data. Pratacultural Science, 30, 178-184(2013).

    [30] Zhangdong JIN, Fei ZHANG, Hongli WANG et al. Analysis on the reasons for the continuous rise of water level in Qinghai Lake since 2005. Journal of Earth Environment, 4, 1355-1362(2013).

    [31] Yan LI, Shuiqiang DUAN, Yongming JIN. Variation characteristics and cause analysis of Qinghai Lake from 1956 to 2011. Yellow River, 36, 87-89,112(2014).

    [32] Zhiguo LI. Changes of glaciers and lakes in the Tibetan Plateau under the background of climate change in recent 50 years. Journal of Natural Resources, 27, 1431-1443(2012).

    [33] Junli LI, Yongwei SHENG, Jianchen LUO et al. Remote sensing mapping of inland lakes in the Qinghai Xizang Plateau. Journal of Lake Sciences, 23, 311-320(2011).

    [34] Siyang DONG, Xian XUE, Quangang YOU et al. Remote sensing analysis of Lake area change in Qinghai Tibet Plateau in recent 40 years. Journal of Lake Sciences, 26, 535-544(2014).

    [35] Xiaohong MA, Liming SONG, Caiqing HE et al. Distribution characteristics of meteorological disasters in Haibei Prefecture, Qinghai Province. Qinghai Science and Technology, 22-26(2005).

    [36] Lei FAN, LÜ Aifeng, Wenxiang ZHANG. Temporal and spatial characteristics of drought in Qinghai Province and its response to atmospheric circulation. Journal of Arid Land Resources and Environment, 35, 60-65(2021).

    Tools

    Get Citation

    Copy Citation Text

    Xingsheng XIA, Jianjun CAI, Lingang WANG, Yuxi ZHONG, Yaozhong PAN. Spatial and Temporal Variation of Qinghai Lake in Two Seasons Monitored by Remote Sensing[J]. Remote Sensing Technology and Application, 2024, 39(4): 1026

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Jan. 2, 2023

    Accepted: --

    Published Online: Jan. 6, 2025

    The Author Email: XIA Xingsheng (xxs@qhnu.edu.cn)

    DOI:10.11873/j.issn.1004-0323.2024.4.1026

    Topics