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Modeling Process of the Spatial-Temporal Changes of Vegetation Cover and its Relationship with Drivers in Drylands and Wetlands in Xianjiang (China) Cover

Modeling Process of the Spatial-Temporal Changes of Vegetation Cover and its Relationship with Drivers in Drylands and Wetlands in Xianjiang (China)

Open Access
|Aug 2024

References

  1. Cao K., Gao J., 2022 – Assessment of climatic conditions for tourism in Xinjiang, China, Open Geosciences, 14, 382-392.
  2. Duan H., Xue X., Wang T., Kang W., Liao J and Liu, S., 2021 – Spatial and temporal differences in alpine meadow, alpine steppe and all vegetation of the Qinghai-Tibetan Plateau and their responses to climate change, Remote Sensing, 13, 669, DOI: 10.3390/rs13040669.
  3. Elsu C. A., Ramesh K. V. and Sridevi H., 2017 – Quantification and understanding the observed changes in land cover patterns in Bangalore, International Journal of Civil Engineering and Technology (IJCIET), 8, 4, 597-603.
  4. Gadiga B. L., 2015 – Monitoring the spatio-temporal dynamics of vegetation cover in Mubi Region, Adamawa State, Nigeria, Journal of Geographic Information System, 7, 598-606, DOI: 10.4236/jgis.2015.76048.
  5. Gang Y., Zengyun H., Xi C. and Tashpolat T., 2016 – Vegetation dynamics and its response to climate change in Central Asia, Journal of Arid Land, 8, 3, 375-388, DOI: 10.1007/s40333-016-0043-6.
  6. Han Z., Wu Q., Lai R, Soomro S., Hou D and Hu C., 2022 – Spatio-temporal variations of vegetation cover and its influence on surface air temperature change over the Yellow River Basin China, Journal of Water and Climate Change, 13, 9, 3239, DOI: 10.2166/wcc.2022.037.
  7. He Z., Yue T., Chen Y., Mu W., Xi M. and Qin F., 2023 – Analysis of spatial and temporal changes in vegetation cover and driving forces in the Yan River Basin, Loess Plateau, Remote Sensing, 15, 4240, DOI: 10.3390/rs15174240.
  8. Hu Y. and Nacun, B., 2018 – An analysis of land-use change and grassland degradation from a policy perspective in inner Mongolia, 1990-2015, Sustainability, 10, 4048, DPO: 10.3390/su10114048.
  9. Hu, Y and Hu, Y., 2019 – Land cover changes and their driving mechanisms in Central Asia from 2001 to 2017 supported by Google Earth Engine, Remote Sensing, 11, 554, DOI: 10.3390/rs11050554.
  10. Jiang M., Tian S., Zheng Z., Zhan Q and He, Y., 2017 – Human activity influences on vegetation cover changes in Beijing, China, from 2000 to 2015, Remote Sensing, 9, 271, DOI: 10.3390/rs9030271.
  11. Jiapaer G., Liang S., Yi Q. and Liu J., 2015 – Vegetation dynamics and responses to recent climate change in Xinjiang using leaf area index as an indicator, Ecological indicators, 58, 64-76.
  12. Karnieli A., Qin Z., Wu B., Panov N and Yan F., 2014 – Spatio-temporal dynamics of land-use and land-cover in the Mu Us Sandy Land, China, Using the change vector analysis technique, Remote Sensing, 6, 9316-9339; DOI: 10.3390/rs6109316.
  13. Li M., Yan Q., Li G., Yi M and Li J., 2022 – Spatio-temporal changes of vegetation cover and its influencing factors in northeast China from 2000 to 2021, Remote Sensing, 14, 5720, DOI: 10.3390/rs14225720.
  14. Li Z., Deng X., Yin F and Yang C., 2015 – Analysis of climate and land use changes impacts on land degradation in the North China Plain, Hindawi Publishing Corporation Advances in Meteorology, 2015, 976370, 1-11, DOI: 10.1155/2015/976370.
  15. Liu Y., Haohong H. H., Meng L., Liu M., Wu Z., Liu T and Labatt D., 2023 – Spatial temporal evolution of vegetation coverage and its relationship with terrain and human factors in the upper reaches of Ganjiang River Basin, China, Frontiers in Earth Science, 10:1043403, DOI: 10.3389/feart.2022.1043403.
  16. Liu X., Hong Z., Zhou L., Liu J., Guo X. and Li S., 2022 – Past and future of land use change in the middle reaches of the Yellow River Basin in China, Research Square, DOI: DOI: 10.21203/rs.3.rs-2144585/v1.
  17. Liu L. Z. and Xiao J. F., 2006 – Spatial-temporal correlations of NDVI with precipitation and temperature in Yellow river basin, Chinese Journal of Ecology, 25, 5, 477-481. (in Chinese)
  18. Lovland T. and Merchant J., 2004 – Ecoregions and ecoregionalization: geographical and ecological perspectives, Environmental Management, 34, 1-13, DOI: 10.1007/s00267-003-5181-x.
  19. Luo M., Liu T., Meng F., Duan Y., Bao A., Xing W., Feng X., De Maeyer P. and Frankl A., 2019 – Identifying climate change impacts on water resources in Xinjiang, China, Science of the Total Environment, 676, 613-626.
  20. Meng X., Gao X., Li S and Lei J., 2020 – Spatial and temporal characteristics of vegetation NDVI changes and the driving forces in Mongolia during 1982-2015, Remote Sensing, 12, 603, DOI: 10.3390/rs12040603.
  21. Miao L., Feng Z., Sun Z., Moore J and Cui X., 2016 – China’s land-use changes during the past 300 years: a historical perspective, International Journal of Environtal Research and Public Health, 13, 847, DOI: 10.3390/ijerph13090847, Posted on Authorea 17 Aug (2020): The copyright holder is the author/funder, All rights reserved, No reuse without permission, DOI: 10.22541/au.159769328.83108985, This a preprint and has not been peer reviewed, Data may be preliminary.
  22. Sun R., Liu C. M. and Zhu Q. J., 2001 – Relationship between the fractional vegetation cover change and rainfall in the Yellow River basin, Acta Geografica Sinica, 56, (6), 667-672. (in Chinese)
  23. Shan Y., Dai X., Li W., Yang Z., Wang Y., Qu G., Liu W., Ren J., Li C., Liang S. and Zeng B., 2022 – Detecting spatial-temporal changes of urban environment quality by remote sensing-based ecological indices: a case study in Panzhihua City, Sichuan Province, China, Remote Sensing, 14, 4137, DOI: 10.3390/rs14174137.
  24. Tahir A. A., Quazi K. H., Sana I., Maleeha B., Hira Jannat B. and Hira J., 2019 – Investigative spatial distribution and modelling of existing and future urban land changes and its impact on urbanization and economy, Remote Sensing, 11, 2, 105.
  25. Wang C., Wang J., Naudiyal N., Wu N., Cui X., Wei Y. and Chen Q., 2022 – Multiple effects of topographic factors on spatio-temporal variations of vegetation patterns in the three parallel rivers region, Southeast Tibet, Remote Sensining, 14, 1, 151, DOI: 10.3390/rs14010151.
  26. Wang M., Wang Y., Li Z and Zhang H., 2023 – Analysis of spatial-temporal changes and driving factors of vegetation coverage in Jiamusi City, Forests, 14, 1902, DOI: 10.3390/f14091902
  27. Xianfeng L., Jinshui Z., Xiufang Z., Pan Yaozhong P., Yanxu L., Donghai Z. and Lin Z. L., 2014 – Spatiotemporal changes in vegetation coverage and its driving factors in the Three-River headwaters region during 2000-2011, Journal of Geographical Sciences, 2014, 24, 2, 288-302. DOI: 10.1007/s11442-014-1088-0.
  28. Xianghong D., Xiyong H., Yuandong W. and Li W., 2015 – Spatial-temporal characteristics of land use intensity of coastal zone in China during 2000-2010, China Geographcal Sciences, 25, 1, 51-61, DOI: 10.1007/s11769-014-0707-0.
  29. Xuemei Y., Shizeng L., Taibao Y., Xianying X., Caizhou K., Jinnian T., Huaidong W., Ghebrezgabher M. and Zhiqi L., 2016 – Spatial-temporal dynamics of desert vegetation and its responses to climatic variations over the last three decades: a case study of Hexi region in Northwest China, Journal Arid Land, 8, 4, 556-568, DOI: 10.1007/s40333-016-0046.
  30. Xiaoa H. and Weng Q., 2007 – The impact of land use and land cover changes on land surface temperature in a karst area of China, Journal of Environmental Management, 85, 245-257, DOI: 10.1016/j.jenvman.2006.07.016.
  31. Xue J., Wang Y., Teng H., Wang N., Li D., Peng J., Biswas A. and Shi Z., 2021 – Dynamics of vegetation greenness and its response to climate change in Xinjiang over the past two decades, Remote Sensing, 13, 4063, DOI: 10.3390/rs13204063.
  32. Yao B., Ma L., Si H., Li S., Gong X. and Wang X., 2023 – Spatial pattern of changing vegetation dynamics and its driving factors across the Yangtze River basin in chongqing: a geodetector-based study, Land, 12, 269.
  33. Yin H., Pflugmacher D., Lib A., Lic Z. and Hostert P., 2018 – Land use and land cover change in Inner Mongolia ‒ understanding the effects of China’s re-vegetation programs, Remote Sensing of Environment, 204, 918-930, DOI: 10.1016/j.rse.2017.08.030.
  34. Yu H., Bian Z., Mu S., Yuan J. and Chen F., 2020 – Effects of climate change on land cover change and vegetation dynamics in Xinjiang, China, International Journal of Environmental Research and Public Health, 17, 1-24.
  35. Zhang X., She D., Huang X. and Wang G., 2020 – Identifying the effects of land use changes and check dams on sediment yield in a watershed of the Loess Plateau, China, Authorea, 17, DOI: 10.22541/au.159769328.83108985.
  36. Zhao H., Li X., Ezizi M. and Yao J., 2022 – Changes in the characteristics of dry-wet periods in Xinjiang, China based on the SPEI index, Atmósfera, 35, 3, 483-496.
  37. Zhu Z., Zhang Z ., Zhao X., Zuo L and Wang X., 2022 – Characteristics of land use change in China before and after 2000, Sustainability, 14, 14623, DOI: 10.3390/su142114623.
  38. Zhuang Q., Wu S., Feng X. and Niu Y., 2020 – Analysis and prediction of vegetation dynamics under the background of climate change in Xinjiang, China, PeerJ, 8:e8282, DOI: 10.7717/peerj.8282.
  39. Zhong B. X., Jiong X. X. and Zheng W. Z., 2008 – Spatiotemporal variations of vegetation cover on the Chinese Loess Plateau (1981-2006): Impacts of climate changes and human activities, Science in China Series D: Earth Sciences, 51, 1, 67-78.
  40. * https://www.usgs.gov/special-topics/remote-sensing-phenology/science/ndvi-foundation-remote-sensing-phenology
  41. ** https://pro.arcgis.com/en/pro-app/latest/tool-reference/spatial-statistics/spatial-autocorrelation.htm#:~:text=When%20the%20z%2Dscore%20or,can%20reject%20the%20null%20hypotheses
  42. *** https://earthobservatory.nasa.gov/features/MeasuringVegetation
DOI: https://doi.org/10.2478/trser-2024-0003 | Journal eISSN: 2344-3219 | Journal ISSN: 1841-7051
Language: English
Page range: 27 - 74
Published on: Aug 9, 2024
Published by: Lucian Blaga University of Sibiu
In partnership with: Paradigm Publishing Services
Publication frequency: 3 issues per year
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© 2024 Seyed Omid Reza Shobairi, Lingxiao Sun, Haiyan Zhang, Chunlan Li, Jing He, Behnam Asghari Beirami, Samira Hemmati Roudbari, Qorghizbek Ayombekov, published by Lucian Blaga University of Sibiu
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.