logo
calendar14 Avgust 2026
view28
Asosiy til:O'zbek

ЖИЗЗAХ ВИЛОЯТИДA AТМОСФЕРA ҚУРҒОҚЧИЛИГИНИ ТГК ИНДЕКСИ АСОСИДА БАҲОЛАШ

Fan yo'nalishi:Atrof-muhit fanlari (turli xil)Tabiat va landshaftni muhofaza qilishGeografiya, rejalashtirish va rivojlanish
pdf

ЖИЗЗAХ ВИЛОЯТИДA AТМОСФ....pdf

PDF

MAQOLA ANNOTATSIYASI

quote
Мақолада Жиззах вилоятида атмосфера қурғоқчилигининг шаклланиш шароитлари 1991-2024 йиллар илиқ даври (март–октябрь) учун таҳлил қилинган. Тадқиқотда турли табиий географик шароитларда жойлашган Бахмал, Дўстлик ва Лалмикор метеорология станциялари маълумотларидан фойдаланилди. Атмосфера қурғоқчилиги ҳаво қурғоқчилигининг термогигрометрик коэффициенти (ТГК) асосида баҳоланиб, турли жадалликдаги қурғоқчилик ҳолатларининг термодинамик параметрлар диапазонлари ва мавсумий хусусиятлари ўрганилди. Манн-Кендалл тести ва Тейл-Сен усули ёрдамида қурғоқчилик давомийлигининг вақт бўйича ўзгариш тенденциялари баҳоланди. Натижалар Жиззах вилоятида атмосфера қурғоқчилиги ҳолатлари сонининг ортиш тенденцияси мавжудлигини кўрсатди.

MUALIFLAR

Science ID: DAN-0525-0018

Science ID: MJZ-0525-0031

Teglar

# параметр# сув# ҳаво# усули# Жиззах# ҳарорати# ТГК# вилояти# намлиги# қурғоқчилиги# термодинамик# буғи# босими# дефицити# манн-кендалл# тести# тейл-сен

Maqolani baholang

0
0 ta
5
4
3
2
1

Foydalanilgan adabiyotlar

Бабушкин Л.Н. О климатической характеристике воздушной засухи и суховеев в хлопковой зоне Узбекистана. В кн. Суховеи, их прогнозирование и борьба с ними. – Ташкент. 1974.-С. 59-84.

Петров Ю.В., Абдуллаев А.К. К вопросу оценки сухости воздуха // Метеорология и гидрология, 2010. № 11. – С. 90-96.

Alimkulov S., Makhmudova L., Talipova E. et al. Assessment of the impacts of climate change on drought intensity and frequency using SPI and SPEI in the Southern Pre Balkash region, Kazakhstan // Watershed Ecology and the Environment. 2025. Vol. 7. – P.11-22. doi.org/10.1016/j.wsee.2024.12.001.

Blain G.C. Removing the influence of the serial correlation on the Mann-Kendall test // Revista Brasileira de Meteorologia. 2014. Vol. 29(2). – PР.161-170.

Gilbert R.O. Statistical Methods for Environmental Pollution Monitoring. NY: Wiley, 1987

Haag I., Jones P.D., Samimi C. Central Asias Changing Climate: How Temperature and Precipitation Have Changed across Time, Space, and Altitude // Climate. 2019. – Vol. 7(10). 123. doi.org/10.3390/cli7100123.

Hobbins M., Wood A., Streubel D., Werner K. What drives the variability of evaporative demand across the conterminous United States? // Journal of Hydrometeorology. 2012. Vol. 13. – PР. 1195-1214.

IPCC (Intergovernmental Panel on Climate Change). 2021. Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson–Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York. NY. USA. – 2391 p.

Kendall M.G. Rank Correlation Methods. 4th edition. London: Charles Griffin, 1975.

Kong L., Li Y., Ma L. et al. Climate Change Impacts and Atmospheric Teleconnections on Runoff Dynamics in the Upper-Middle Amu Darya River of Central Asia // Water. 2025. –Vol. 17(5).–721. https://doi.org/10.3390/w17050721.

Mann H.B. Nonparametric tests against trend // Econometrica. 1945. Vol. 13. No. 3. P. 245-259 doi.org/10.2307/1907187.

McVicar T.R., Roderick M.L., Donohue R.J. et al. Global review and synthesis of trends in observed terrestrial near–surface wind speeds: Implications for evaporation // Journal of Hydrology. 2012.-Vol. 416-417. – P. 182-205.

Sheffield J., Wood E.F., Roderick M.L. Little change in global drought over the past 60 еars // Nature, 2012. 491, 435–438. doi:10.1038/nature11575.

Sun Y., Chen X., Yu Y. et al. Spatiotemporal Characteristics of Drought in Central Asia from 1981 to 2020 // Atmosphere. 2022. Vol. 13. 1496. doi.org/ 10.3390/atmos13091496.

Tangjialeke W., Zou J., Ding J. et al. Analysis of drought response thresholds and drought-causing factors of central Asian vegetation // Ecological Indicators. 2024. Vol. 169. 112926. doi.org/10.1016/j.ecolind.2024.112926.

Theil H. A rank-invariant method of linear and polynomial regression analysis. In Henri Theil’s Contributions to Economics and Econometrics. Berlin: Springer, 1992. – PР. 345-381.

Van Loon A.F. Hydrological drought explained // Wiley Interdisciplinary Reviews: Water, 2015. 2: 359–392.

Zhang X., Duan Y., Duan J. et al. A daily drought index based on evapotranspiration and its application in regional drought analyses // Science China Earth Sciences. 2022. Vol. 65(2). – PР. 317-336.