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Changes for document Latin America & Caribbean
From version 21.1
edited by S2S_regionact
on 2023/09/13 00:55
on 2023/09/13 00:55
To version 22.1
edited by S2S_regionact
on 2023/10/18 05:21
on 2023/10/18 05:21
Change comment: There is no comment for this version
Content changes
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179 | 179 | (% style="font-size: 14px;" %)Delorit, J., Gonzalez Ortuya, E. C., & Block, P. (2017). **Evaluation of model-based seasonal streamflow and water allocation forecasts for the Elqui Valley, Chile**. //Hydrology and Earth System Sciences//, //21//(9), 4711-4725. |
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182 | +(% style="font-size: 14px;" %)Doss-Gollin, J., Muñoz, Á. G., Mason, S. J., & Pastén, M. (2018). **Heavy rainfall in Paraguay during the 2015/16 austral summer: Causes and subseasonal-to-seasonal predictive skill.** //Journal of Climate//, //31//(17), 6669-6685. | |
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185 | +(% style="font-size: 14px;" %)Esquivel, A., Llanos-Herrera, L., Agudelo, D., Prager, S. D., Fernandes, K., Rojas, A., ... & Ramirez-Villegas, J. (2018). **Predictability of seasonal precipitation across major crop growing areas in Colombia.** //Climate Services//, //12//, 36-47. | |
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188 | +(% style="font-size: 14px;" %)Fernandes, K., Muñoz, A. G., Ramirez-Villegas, J., Agudelo, D., Llanos-Herrera, L., Esquivel, A., ... & Prager, S. D. (2020). **Improving seasonal precipitation forecasts for agriculture in the orinoquía Region of Colombia.** //Weather and Forecasting//, //35//(2), 437-449. | |
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182 | 182 | (% style="font-size: 14px;" %)González, P. M., C. Vera, B. Liebmann, G. Kiladis, 2008: **Intraseasonal variability in subtropical South America as depicted by precipitation data.** Clim. Dyn., 30, 727–744. |
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191 | 191 | (% style="font-size: 14px;" %)Jacques‐Coper, M., Veloso‐Aguila, D., Segura, C., & Valencia, A. (2021). **Intraseasonal teleconnections leading to heat waves in central Chile**. //International Journal of Climatology//. |
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203 | +(% style="font-size: 14px;" %)Lowe, R., Stewart-Ibarra, A. M., Petrova, D., García-Díez, M., Borbor-Cordova, M. J., Mejía, R., ... & Rodó, X. (2017). **Climate services for health: predicting the evolution of the 2016 dengue season in Machala, Ecuador.** //The lancet Planetary health//, //1//(4), e142-e151. | |
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194 | 194 | (% style="font-size: 14px;" %)Luz Clara, M., Alvarez, M.S., Vera, C., C. Simionato, A. Jaureguizar, 2021: **Relationship between sea surface temperature anomalies in the Southwestern Atlantic Continental Shelf and atmospheric variability on intraseasonal timescales.** Clim Dyn. |
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197 | 197 | (% style="font-size: 14px;" %)Marín, J. C., & Barrett, B. S. (2017). **Seasonal and intraseasonal variability of precipitable water vapour in the Chajnantor plateau, Chile**. //International Journal of Climatology//, //37//, 958-971. |
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212 | +(% style="font-size: 14px;" %)Mayta, V. C., Ambrizzi, T., Espinoza, J. C., & Silva Dias, P. L. (2019). **The role of the Madden–Julian oscillation on the Amazon Basin intraseasonal rainfall variability.** //International Journal of Climatology//, //39//(1), 343-360. | |
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215 | +(% style="font-size: 14px;" %)Mayta, V. C., Silva, N. P., Ambrizzi, T., Dias, P. L. S., & Espinoza, J. C. (2020). **Assessing the skill of all-season diverse Madden–Julian oscillation indices for the intraseasonal Amazon precipitation.** //Climate Dynamics//, //54//, 3729-3749. | |
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200 | 200 | (% style="font-size: 14px;" %)Meza, F. J., & Wilks, D. S. (2003). **Value of operational forecasts of seasonal average sea surface temperature anomalies for selected rain-fed agricultural locations of Chile**. //Agricultural and Forest Meteorology//, //116//(3-4), 137-158. |
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209 | 209 | (% style="font-size: 14px;" %)Montecinos, A., Purca, S., & Pizarro, O. (2003). **Interannual‐to‐interdecadal sea surface temperature variability along the western coast of South America.** //Geophysical Research Letters//, //30//(11). |
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230 | +(% style="font-size: 14px;" %)Muñoz, Á. G., Goddard, L., Robertson, A. W., Kushnir, Y., & Baethgen, W. (2015). **Cross–time scale interactions and rainfall extreme events in southeastern South America for the austral summer. Part I: Potential predictors.** //Journal of Climate//, //28//(19), 7894-7913. | |
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233 | +(% style="font-size: 14px;" %)Muñoz, Á. G., Goddard, L., Mason, S. J., & Robertson, A. W. (2016). **Cross–time scale interactions and rainfall extreme events in southeastern South America for the austral summer. Part II: Predictive skill.** //Journal of Climate//, //29//(16), 5915-5934. | |
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236 | +(% style="font-size: 14px;" %)Muñoz, Á. G., Díaz-Lobatón, J., Chourio, X., & Stock, M. J. (2016). **Seasonal prediction of lightning activity in north western Venezuela: Large-scale versus local drivers.** //Atmospheric Research//, //172//, 147-162. | |
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212 | 212 | (% style="font-size: 14px;" %)Osman, M., C. Vera, F. Doblas-Reyes, 2016: **Predictability of the tropospheric circulation in the Southern Hemisphere from CHFP models.** Climate Dynamics, 46, 7, 2423-2434. |
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218 | 218 | (% style="font-size: 14px;" %)Otero, F., M. S. Alvarez, P. Salio, and, C. Vera, 2019: **Intraseasonal modulation of spring‐strong wind events associated with convection in northeastern Argentina.** Int. J. Climatol. |
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248 | +(% style="font-size: 14px;" %)Petry, I., Fan, F. M., Siqueira, V. A., Collishonn, W., de Paiva, R. C. D., Quedi, E., ... & Paranhos, C. S. A. (2023). **Seasonal streamflow forecasting in South America’s largest rivers.** //Journal of Hydrology: Regional Studies//, //49//, 101487. | |
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251 | +(% style="font-size: 14px;" %)Recalde-Coronel, G. C., Barnston, A. G., & Muñoz, Á. G. (2014). **Predictability of December–April rainfall in coastal and Andean Ecuador.** //Journal of Applied Meteorology and Climatology//, //53//(6), 1471-1493. | |
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221 | 221 | (% style="font-size: 14px;" %)Rusticucci, M., & Vargas, W. (2002). **Cold and warm events over Argentina and their relationship with the ENSO phases: risk evaluation analysis.** //International Journal of Climatology: A Journal of the Royal Meteorological Society//, //22//(4), 467-483. |
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227 | 227 | (% style="font-size: 14px;" %)Rutllant, J., & Fuenzalida, H. (1991). **Synoptic aspects of the central Chile rainfall variability associated with the Southern Oscillation**. //International Journal of Climatology//, //11//(1), 63-76. |
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263 | +(% style="font-size: 14px;" %)Ungerovich, M., Barreiro, M., & Masoller, C. (2021). **Influence of Madden–Julian Oscillation on extreme rainfall events in Spring in southern Uruguay.** //International Journal of Climatology//, //41//(5), 3339-3351. | |
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230 | 230 | (% style="font-size: 14px;" %)Vera, C.S., M. S. Alvarez, M.S., P. L. M. Gonzalez, G. N. Kiladis, and B. Liebmann, 2018: **Seasonal cycle of precipitation variability in South America on intraseasonal timescales.** Climate Dynamics, 51, 5–6, 1991–2001. |
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243 | 243 | * Alfaro, E. (2018). **Revision of the main drivers and variability of Central America Climate and seasonal forecast systems. **//Revista de Biología Tropical. 66(Suppl. 1): S153-S175.// |
244 | 244 | |
245 | 245 | * Alfaro//, E., //Chourio, X., Muñoz, A., Mason, S.// //(2017). **Improved seasonal prediction skill of rainfall for the Primera season in Central America. **International Journal of Climatology, 38, e255-e268. |
282 | +* Pons, D., Muñoz, Á. G., Meléndez, L. M., Chocooj, M., Gómez, R., Chourio, X., & Romero, C. G. (2021). **A coffee yield next-generation forecast system for rain-fed plantations: the case of the Samalá watershed in Guatemala.** //Weather and Forecasting//, //36//(6), 2021-2038. | |
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