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‫فرهنگوهنراستانکهگیلویهوبویراحمد‬،‫تاریخ‬

   Li, Z., Li, Y., Shi, X., & Li, J. (2017). The characteristics of wet and dry spells
for the diverse climate in China. Global and Planetary Change, 149, 14-19.

   Tichavský, R., Ballesteros-Cánovas, J. A., Šilhán, K., Tolasz, R., and Stoffel,
M. (2019). Dry spells and extreme precipitation are the main trigger of landslides
in Central Europe. Scientific reports, 9 (1), 1-10.

   Adane, G. B., Hirpa, B.A., Lim, C. H., and Lee, W. K. (2021). Spatial and Temporal
Analysis of Dry and Wet Spells in UpperAwash River Basin, Ethiopia. Water, 12 (11).

   Breinl, K., Di Baldassarre, G., Mazzoleni, M., Lun, D., and Vico, G. (2020).
Extreme dry and wet spells face changes in their duration and timing. Environ-
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   Guzman-Morales J and Gershunov A (2019). Climate change suppresses santa
ana winds of Southern California and sharpens their seasonality Geophys. Res.
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   Okoli K, Mazzolenni M, Breinl K and Di Baldassarre G (2019). A systematic
comparison of statistical and hydrological methods for design flood estimation
Hydrol. Res. 50 1665-78.

   Feng, T., Tipton, Z., Xia, L., & Chang, Y. (2020). Evaluation of CORDEX re-
gional climate models in simulating extreme dry spells in Southwest China. Fron-
tiers in Earth Science, 294.

   Mengistu, M. G., Olivier, C., Botai, J. O., Adeola, A. M., & Daniel, S. (2021).
Spatial and temporal analysis of the mid-summer dry spells for the summer rainfall
region of South Africa. Water SA, 47(1), 76-87.

   Caloiero, T., Coscarelli, R., Ferrari, E., and Sirangelo, B. (2015). Analysis of
dry spells in southern Italy (Calabria). Water, 7 (6), 3009-3023.

   Sirangelo, B., Caloiero, T., Coscarelli, R., & Ferrari, E. (2019). A stochastic ap-
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