The assessment of the performance of the October to December (OND), 2019 rainfall season in Zanzibar (Unguja and Pemba) with reference to local downscaled Tanzania Meteorological Authority (TMA) forecast, and regional (Intergovernmental Authority on Development Climate Prediction and Application Center (IGAD-ICPAC) weather forecasts were assessed by comparing the long term average of OND rainfall data and previous OND rainfall seasons of 2016, 2017 and 2018 as well as extreme positive Indian Ocean Dipole (IOD) during OND seasons of 1961, 1994, 1997, 2006 and 2019 for Zanzibar. The study assessed zonal (u) and meridional (v) winds at 850 and 200 mb, monthly and dekadal sea surface temperature (SST); the Madden Julien Oscillations (MJO) forecast reports and the ocean heat content data. Both gridded and observed datasets were processed into dekadal, monthly and seasonal averages and then analysed. The results revealed that, based on the observations, above normal rainfall of 936 and 908 mm were reported at stations of Kisauni (Unguja) and Karume airport (Pemba) during 2019 OND season. This amount was the first and second ever recorded for the extreme positive IOD during OND seasons of 1961, 1994, 1997, 2006 and 2019, and also the first for the previous higher OND rainfall seasons of 2016, 2017 and 2018 which was highly variable. Moreover, these values were second ever-recorded highest OND rainfall since 1916 to 2019 where the first one was observed in 1961. Furthermore, the results revealed that 2019 OND seasonal rainfall had the highest amount of contribution based on historical climatology. For instance, the 2019 OND rainfall for Kisauni, Pemba airport and Matangatuani contributed to 198%, 303% and 231% of the long term (1987-2016) mean OND rainfall in Zanzibar. Indeed, the results show that the presence of the MJO during OND and the enhanced positive IOD was among the causes for the observed wetness of the 2019 OND in Zanzibar and most parts of the country. Moreover, the dominant easterly, southeasterly and northwesterly onshore winds during 2019 OND also contributed to heavy rainfall. The monthly rainfall variability among stations had the highest amount of rainfall which ranges from 400 to 500 mm which was observed during October in Kisauni and Karume airport, while the lowest amount ranging from 150 to 180 mm was observed during November in Matangatuani and the surrounding stations. Based on the comparison of the forecasted reports issued by ICPAC and TMA, the results revealed that irrespective of not considering the likelihood of occurrence of MJO
References
[1]
Kimani, M.W., Hoedjes, J.C.B. and Su, Z.B. (2019) Assessment of Moisture Distribution Influence on Rainfall Variability during Different Phases of IOD over East Africa. Journal of Geophysical Research Atmosphere, under Review.
[2]
Mahongo, S.B. and Francis, J. (2012) Analysis of Rainfall Variations and Trends in Coastal Tanzania. Western Indian Ocean Journal of Marine Sciences, 11, 121-133.
[3]
Kabanda, T.A. and Jury, M.R. (1999) Inter-Annual Variability of Short Rains over Northern Tanzania. Climate Research, 13, 231-241. https://doi.org/10.3354/cr013231
[4]
Mpeta, E.J. (2002) Mechanisms of Inter-Annual Rainfall Variability over Tropical Highlands of Africa and Its Predictability Potential. Ph.D. Thesis, University of Zululand, 198 p.
[5]
Kai, K.H. (2018) Impacts of Southwestern Indian Ocean Tropical Cyclones and Storms on the Rainfall Pattern and Vegetation Productivity over Tanzania. Thesis, the Institute of Marine Sciences of the University of Dar Es Salaam, Dar Es Salaam.
[6]
Jury, M.R. and Pathack, B. (1991) A Study of Climate and Weather Variability over the Tropical Southwest Indian Ocean. Meteorology Atmospheric Physic, 47, 37-48. https://doi.org/10.1007/BF01025825
[7]
Talley, L.D. (2008) Freshwater Transport Estimates and the Global Overturning Circulation: Shallow, Deep and through Flow Components. Progress in Oceanography, 78, 257-303. https://doi.org/10.1016/j.pocean.2008.05.001
[8]
Reid, T.J.L. and Robbins, P.E. (2003) Data-Based Meridional Overturning Stream Functions for the Global Ocean. Journal of Climate, 16, 3213-3226. https://doi.org/10.1175/1520-0442(2003)016<3213:DMOSFT>2.0.CO;2
[9]
Issufo, H. (2016) The Ocean’s Role in the Hydrological Cycle. Assessment of Major Ecosystem Services from the Marine Environment. Regional State of the Coast Report; WIOMAS.
[10]
Saji, N.H., Goswami, B.N., Vinayachandran, P.N. and Yamagata, T. (1999) A Dipole Mode in the Tropical Indian Ocean. Nature, 401, 360-363. http://www.nature.com https://doi.org/10.1038/43854
[11]
Mahongo, S.B., Francis, J. and Osima, S.E. (2011) Wind Patterns of Coastal Tanzania Their Variability and Trends. Western Indian Ocean Journal of Marine Sciences, 10, 107-120.
[12]
Hastenrath, S., Nicklis, A. and Greischar, L. (1993) Atmospheric Hydrospheric Mechanisms of Climate Anomalies in the Western Equatorial Indian Ocean. Journal of Geophysical Research, 98, 20219-20235. https://doi.org/10.1029/93JC02330
[13]
Kijazi, A.L. and Reason, C.J. (2005) Relationships between Intraseasonal Rainfall Variability of Coastal Tanzania and ENSO. Theoretical and Applied Climatology, 82, 153-176. https://doi.org/10.1007/s00704-005-0129-0
[14]
Jury, M.R., Pathack, B., Wang, B., Powel, M. and Nirivololona, R. (1993) Destructive Tropical Cyclone Season in the SWIO January-February 1984. South African Geographical Journal, 75, 53-59. https://doi.org/10.1080/03736245.1993.10586405
[15]
Mavume, A.F., Rydberg, L., Mathieu, R. and Lutjeharms, J.R.E. (2006) Climatology and Landfall of Tropical Cyclones in the South West Indian Ocean. Western Indian Ocean Journal Marine Sciences, 8, 15-36. https://doi.org/10.4314/wiojms.v8i1.56672
[16]
TMA Book (2019-2020) Statement on the Status of Tanzania Climate in 2019.
[17]
Henderson, A.S., Zhang, H., Berz, G., Emanuel, K., Gray, W., Landsea, C., Holland, G., Lighthil, J., Shieh, S.-L., Webster, P. and McGuffie, K. (1998) Tropical Cyclones and Global Climate Change, a Post-IPCC Assessment. Bulletin of the American Meteorological Society, 79, 19-38. https://doi.org/10.1175/1520-0477(1998)079<0019:TCAGCC>2.0.CO;2
[18]
Bakari, M.S. (2015) Climate Change Impacts and Adaptation Strategies of Small Scale Agriculture Production in Micheweni District Pemba, Tanzania. MSc Thesis, University of Dodoma, Dodoma University Press, Avenue.
[19]
ICPAC (2019) Statement from the Fifty Third Greater Horn of Africa Climate Outlook Forum (ghacof53) for October to December, 2019 Rainfall Season: 26-28 August 2019; Hyatt Hotel, Dar es salaam, Tanzania.
[20]
TMA (2019) The October to December (OND) Seasonal Forecast for Tanzania. http://www.meteo.go.tz/weather_forecasts/seasonal-weather-forecast
[21]
Madden, R.A. and Julian, P.R. (1994) Observations of the 40-50 Days Tropical Oscillations. A Review. Monthly Weather Review, 122, 814-835. https://doi.org/10.1175/1520-0493(1994)122<0814:OOTDTO>2.0.CO;2
[22]
Indeje, M., Semazzi, F.H.M. and Ogallo, L.J. (2000) ENSO Signals in East African Rainfall Seasons. International Journal of Climatology, 20, 19-46. https://doi.org/10.1002/(SICI)1097-0088(200001)20:1<19::AID-JOC449>3.0.CO;2-0
[23]
Reynolds, R.W., Smith, T.M., Liu, C.Y., Chelton, D.B., Casey, K.S. and Schlax, M.G. (2007) Daily High-Resolution-Blended Analyses for Sea Surface Temperature. Journal of Climate, 20, 5473-5496. https://doi.org/10.1175/2007JCLI1824.1
[24]
Nicholson, S.E. (2015) Long-Term Variability of the East African “Short Rains” and Its Links to Large-Scale Factors. International Journal of Climatology, 35, 3979-3990. https://doi.org/10.1002/joc.4259
[25]
Kavishe, G.M. and Limbu, P.T.S. (2020) Variation of October to December Rainfall in Tanzania and Its Association with Sea Surface Temperature. Arabian Journal of Geosciences. https://doi.org/10.1007/s12517-020-05535-z
[26]
Clark, C.O., Webster, P.J. and Cole, J.E. (2002) Interdecadal Variability of the Relationship between the Indian Ocean Zonal Mode and East African Coastal Rainfall Anomalies. Journal of Climate, 19, 548-554. https://doi.org/10.1175/1520-0442(2003)016<0548:IVOTRB>2.0.CO;2
[27]
Yang, W.G., Seager, R., Cane, M.A. and Lyon, B. (2015) The Annual Cycle of East African Precipitation. Journal of Climate, 28, 2385-2404. https://doi.org/10.1175/JCLI-D-14-00484.1
[28]
Finney, D.L., Marsham, J.H., Walker, D.P., Birch, C.E., Woodhams, B.J., Jackson, L.S. and Hardy, S. (2019) The Effect of Westerlies on East African Rainfall and the Associated Role of Tropical Cyclones and the Madden-Julian Oscillation. Quarterly Journal of the Royal Meteorological Society, 146, 647-664. https://doi.org/10.1002/qj.3698