Document Type : Research Paper

Authors

1 Department of Geography, University of Tarbiat Modarres

2 Climatology in Environmental Planning, University of Tarbiat Modarres

Abstract

In this research the relationship between autumn precipitation rate in north west and western region stations of Iran and north Caspian sea teleconnection pattern in a time period of 29 years (1977-2005) have been calculated and analyzed. Results of the Pearson correlation analysis between the Northern Caspian sea pattern (NCP) index and North West and western regions autumn precipitation rates showed that in Positive phase of NCP autumn rainfall is increased from normal limit and in negative phase the rainfall is decreased. A relatively good linking between the northwest and west regions’ fall rainfalls with NCP was calculated. The signficance coefficient was calculated 0.31 for autumn long term mean rainfall of studied stations. The monthly correlation analyzes calculated indicated the highest correlation between monthly rainfall of stations and the NCP in December with an 0.52 correlation coefficient. Results also showed that Khoy station was affected more from NCP. This study established that In addition to the ENSO, common pattern of the effects on the autumn rainfall was previously approved and new NCP also affected rainfall fluctuations and autumn wet and dry spells occurrences in northwest and west regions of Iran.

Keywords

1ـ خسروی، م. (1381)، «پدیده انسو (ENSO) و تغییرپذیری اقلیم جنوبشرق ایران»، رساله دکتری، گروه جغرافیای طبیعی، دانشکده جغرافیا، دانشگاه اصفهان.
2ـ محمدخورشیددوست، ع.م.؛ قویدل رحیمی، ی. (1386)، «ارزیابی اثر پدیده "انسو" برتغییرپذیری بارش­های فصلی استان آذربایجان­شرقی با استفاده ازشاخص چندمتغیره انسو»، پژوهش­های جغرافیایی، 26-15 : 57.
3ـ خوش­اخلاق، ف. (1377)، «پدیده انسو و تأثیر آن بررژیم بارش ایران»، فصلنامه تحقیقات جغرافیایی، 141-130: 51.
4ـ عزیزی، ق. (1379)، «النینو و دوره­های ترسالی و خشکسالی در ایران»، پژوهش­های جغرافیایی دانشگاه تهران، 54-43: 38.
5ـ مدرس­پور، آ. (1373)، «ناهنجاری­های اقلیمی ایران ENSO»، پایان­نامه کارشناسی ارشد، گروه فیزیک دریا، دانشگاه آزاداسلامی واحد شمال تهران.
6ـ ناظم­السادات، س،م،ج. (1378)، «بررسی تأثیر پدیده ال­نینو (نوسانات جنوبی) بر بارندگی پاییزی ایران»، دومین کنفرانس منطقه­ای تغییر اقلیم، سازمان هواشناسی کشور، 13و 14 آبان.
7- Ciarlo, M, (2008), “Investigating Relationships between Oscillation Patterns Around Europe and their Influence on Aerosol Transport Using a Regional Climate Model” (RegCM4), MSc (by research) Dissertation, Department of Physics, Faculty of Science, University of Malta, Malta.
8- Ghasemi, A, R; D, Khalili, (2008), “The Effect of the North Sea-Caspian Pattern (NCP) on wint Hertemprature in Iran, Journal of the Theoretical and Applied Clhmatology, 92, 59-74.
9- Göktürk, O, M, M, Karaca, (2006), “Influence of North Sea-Caspian Pattern on the Hydroclimate of Turkey”, Geophysical Research Abstracts, Vol. 8, 00314, SRef-ID: 1607-7962/gra/EGU06-A-00314.
10- Gündüz, M; E, Özsoy, (2005), “Effects of the North Sea Caspian Pattern on Surface Fluxes of Euro-Asian-Mediterranean Seas”, Geophysical Research Letter, 32, L21701, doi:
       10.1029/2005GL024315.
11- Hatzaki, M., Flocas, H.A., Maheras, P., Asimakopoulos, D.N., Giannakopoulos, C. (2006), “ Study of Future Climatic Variations of A Teleconnection Pattern Affecting Eastern Mediterranean”, Global NEST Journal, 8(3): 195-203.
12- Kutiel, H; M, Türkes, (2005), “New Evidences for the Role of the North Sea-Caspian Pattern on the Temperature and Precipitation Regimes in Continental Central Turkey”, Geografiska Annaler, 87 (4): 501-513.
14- Sen, O; A, Unal; D, Bozkurt; T, Kindap, (2011), “Temporal Changes in the Euphrates and Tigris Discharges and Teleconnections”, Environmental Research Letter, 6(2): 1-9, doi: 10.1088/1748-9326/6/2/024012.
15- Tatly, H, (2007), “Synchronization between the North Sea-Caspian Pattern (NCP) and Surface air Temperatures in NCEP”, International Journal of Climatology, 27: 1171-1187.
16- Wallace, J M; D. S. Guzzler (1981), “Teleconnections in the Geopotential Height Field during the Northern Hemisphere Winter”, Monthly Weather Review, 109: 784-812
17- Yetemen, O., Yalcin, T. (2009), “Climatic Parameters and Evaluation of Energy Consumption of the Afyon Geothermal District Heating System”, Afyon, Turkey, Renewable Energy, 34: 706-710.