OROL DENGIZI ATROFIDA QURG’OQCHILIKNING O’RMON QOPLAMI O’ZGARISHIGA TA’SIRINI O’RGANISH

Mualliflar

  • Gauxar Kipshakbaeva
  • Timur Berdimbetov
  • Saxibjamal Niyetullaeva

Kalit so'zlar

https://doi.org/10.47390/ts-v3i6y2025N1

Kalit so'zlar

Orol dengizi, qurg’oqchilik o’zgarishi, SPI, MODIS, korrelyatsiya tahlili.

Annotasiya

Ushbu maqolada tadqiqot maydoni sifatida tanlangan Orol dengizi mintaqasi bo’ylab MODIS-NDVI global bazasi asosida vegetatsiya dinamikasi fazoviy va sonli statistik tasniflandi shunundek SPI va PDSI orqali mintaqada kuzatilgan qurg’oqchilik jarayoni haloti va tadqiqot maydonida mintaqalar kesimida o’rmon qoplami rivojlanishi va unga qurg’oqchilik tasiri tahlil qilindi.

Manbalar

1. Philip Micklin, N.V. Aladin, Igor Plotnikov In book: The Aral Sea The Devastation and Partial Rehabilitation of a Great LakeChapter: 12Publisher: Springer Berlin HeidelbergEditors:. DOI: 10.1007/978-3-642-02356-9_12

2. Anna Kirilenko, Valts Vilnītis, Gatis Eriņš, Dr Anatoly Krutov, and Neimatullo Safarov. Analytical review of biodiversity and significant ecosystems conservation priorities in Central Asia. WECOOP, 2023

3. N Murzintcev, S Nietullaeva, T Berdimbetov… 2025. Reconstruction of Water Storage Variability in the Aral Sea Region. Climate 2025, 13(9), 182; https://doi.org/10.3390/cli13090182

4. T. T. Berdimbetov, Z-G. Ma, C. Liang, and S. Ilyas. Impact of Climate Factors and Human Activities on Water Resources in the Aral Sea Basin, Hydrology. 7, (2020). https://doi.org/10.3390/hydrology7020030

5. T. Berdimbetov, S. Ilyas, Z. Ma, M. Bilal, and S. Nietullaeva, Climatic Change and Human Activities Link to Vegetation Dynamics in the Aral Sea Basin Using NDVI, Earth Systems and Environment. 5, no. 2 (2021). http://dx.doi.org/10.1007/s41748-021-00224-7

6. Timur, B. (2023). Spatio-Temporal Variations of Climate Variables and Extreme Indices over the Aral Sea Basin during 1960 - 2017. Trends in Sciences, 20(12), 5664. https://doi.org/10.48048/tis.2023.5664

7. X. Huang, J. Wang, J. Shang, C. Liao, J. Liu. Application of polarization signature to land cover scattering mechanism analysis and classification using multi-temporal C-band polarimetric RADARSAT-2 imagery. Remote Sens. Environ., 193 (2017), pp. 11-28

8. Berdimbetov, T.; Pushpawela, B.; Murzintcev, N.; Nietullaeva, S.; Gafforov, K.; Tureniyazova, A.; Madetov, D. Unraveling the Intricate Links between the Dwindling Aral Sea and Climate Variability during 2002–2017. Climate 2024, 12, 105. https://doi.org/10.3390/cli12070105

9. X. Zhang, J. Wang, G.M. Henebry, F. Gao. Development and evaluation of a new algorithm for detecting 30 m land surface phenology from VIIRS and HLS time series. ISPRS J. Photogrammetry Remote Sens., 161 (2020), pp. 37-51

10. Lioubimtseva, E.; Cole, R. Uncertainties of Climate Change in Arid Environments of Central Asia. Rev. Fish. Sci. Aquac. 2007, 14, 29–49. Doi: https://doi.org/10.1080/10641260500340603

11. Aitekeyeva, N.; Li, X.; Guo, H.; Wu, W.; Shirazi, Z.; Ilyas, S.; Yegizbayeva, A.; Hategekimana, Y. Drought Risk Assessment in Cultivated Areas of Central Asia Using MODIS Time-Series Data. Water 2020, 12, 1738.

12. Yegizbayeva, A.; Ilyas, S.; Berdimbetov, T. Drought Characterisation of Syrdarya River Basin in Central Asia Using Reconnaissance Drought Index. In Proceedings of the IGARSS 2022–2022 IEEE International Geoscience and Remote Sensing Symposium, Kuala Lumpur, Malaysia, 17–22 July 2022; pp. 6356–6359. DOI: 10.1109/IGARSS46834.2022.9883653

13. Foldvary, L.; Tureniyazova, A.; Berdimbetov, T.; Abdurahmanov, I. Relationship between climate and land cover change in Aral Sea Basin. E3S Web Conf. 2023, 386, 06003. Doi: https://doi.org/10.1051/e3sconf/202338606003

##submission.downloads##

Yuborilgan

2025-09-15

Nashr qilingan

2025-09-16

Qanday ko'rsatish

Kipshakbaeva, G., Berdimbetov, T., & Niyetullaeva, S. (2025). OROL DENGIZI ATROFIDA QURG’OQCHILIKNING O’RMON QOPLAMI O’ZGARISHIGA TA’SIRINI O’RGANISH. Techscience Uz - Topical Issues of Technical Sciences, 3(6), 4–14. https://doi.org/10.47390/ts-v3i6y2025N1

##plugins.generic.recommendBySimilarity.heading##

1 2 3 > >> 

##plugins.generic.recommendBySimilarity.advancedSearchIntro##