Struktura obiektu
Tytuł:

Geospatial and temporal analysis of drought years in Zimbabwe, 1940-1999

Inny tytuł:

Geographia Polonica Vol. 86 No. 4 (2013)

Twórca:

Mukwada, Geoffrey ; Manatsa, Desmond

Wydawca:

IGiPZ PAN

Miejsce wydania:

Warszawa

Data wydania/powstania:

2013

Opis:

24 cm

Typ obiektu:

Czasopismo/Artykuł

Temat i słowa kluczowe:

rolnictwo ; susza ; bezpieczeństwo żywnościowe ; analiza geoprzestrzenna ; środki utrzymania ; analiza serii czasowych ; Zimbabwe

Bibliografia:

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2. Barron J., 2004. Dry spell mitigation to upgrade semi‑arid rainfed agriculture: Water harvesting and soil nutrient management for smallholder maize cultivation in Machakos, Kenya. Stockholm: Institutionen för systemekologi, 38 pp. [PhD Thesis].
3. Barron J., Kwacha G., 2005. Run‑off water harvesting for dry spell mitigation in maize (Zea mays L.): Results from on‑farm research in semi‑arid Kenya. Agricultural Water Management, vol. 74, no. 1, pp. 1‑21.
http://dx.doi.org/10.1016/j.agwat.2004.11.002 -
4. Chama ille‑Jammes S., Fritz H., Murindagomo F., 2007. Detecting climate changes of concern in highly variable environments: Quantile regressions reveal that droughts worsen in Hwange National Park, Zimbabwe. Journal of Arid Environments, vol. 71, no. 3, pp. 321‑326.
http://dx.doi.org/10.1016/j.jaridenv.2007.05.005 -
5. Gwimbi P., 2009. Cotton farmers' vulnerability to climate change in Gokwe District (Zimbabwe): impact and influencing factors. Journal of Disaster Risk Studies, vol. 2, no. 2, pp. 81‑92.
6. Hallack‑Alegria M., Watkins D.W., 2007. Annual and warm season drought intensity–duration–frequency analysis for Sonora, Mexico. Journal of Climate, vol. 20, no. 9, pp. 1897‑1909.
http://dx.doi.org/10.1175/JCLI4101.1 -
7. Heim R.R., 2002. A review of twentieth‑century drought indices used in the United States. Bulletin of the American Meteorological Society, vol. 83, no. 8, pp. 1149‑1165.
8. Kim T.W., Valdes J.B., 2002. Frequency and spatial characteristics of droughts in the Conchos River basin, Mexico. Water International, vol. 27, no. 3, pp. 420‑430.
http://dx.doi.org/10.1080/02508060208687021 -
9. Lobell D.B., Burke M.B., Teba ldi C., Mastrandrea M.D., Falcon W.P., Naylor R.L., 2008. Prioritizing climate change adaptation needs for food security in 2030. Science, vol. 319, no. 5863, pp. 607‑610.
10. Makarau A., 1995. Intra‑seasonal oscillatory models of the southern Africa summer circulation. Cape Town: University of Cape Town. Department of Oceanography [PhD Thesis].
11. Makaudze E.M., Miranda M.J., 2010. Catastrophic drought insurance based on the remotely sensed normalised difference vegetation index for smallholder farmers in Zimbabwe. Agricultural Economics Research, Policy and Practice in Southern Africa, vol. 49, no. 4, pp. 418‑432.
12. Manatsa D., Mukwada G., Siziba E., Chinyanganya T., 2010. Analysis of multidimensional aspects of agricultural droughts in Zimbabwe using the Standardized Precipitation Index (SPI). Theoretical and Applied Climatology, vol. 102, no. 3‑4, pp. 287‑305.
13. Manatsa D., Nyakudya I.W., Mukwada G., Matsikwa H., 2011. Maize yield forecasting for Zimbabwe farming sectors using satellite rainfall estimates. Natural Hazards, vol. 59, no. 1, pp. 447‑463.
http://dx.doi.org/10.1007/s11069-011-9765-0 -
14. Manatsa D., Unganai L., Gadzirai C., Behera S.K., 2012. An innovative tailored seasonal rainfall forecasting production in Zimbabwe. Natural Hazards, vol. 64, no. 2, pp. 1187‑1207.
http://dx.doi.org/10.1007/s11069-012-0286-2 -
15. Manjengwa J., Kasirye I., Matema C., 2012. Understanding poverty in Zimbabwe: A sample survey in 16 Districts. Paper prepared for presentation at the Centre for the Study of African Economies Conference 2012 "Economic Development in Africa", Oxford, United Kingdom, March 18‑20, 2012, 19 pp.
16. Mason S.J., Jury M., 1997. Climatic variability and change over Southern Africa: A reflection on underlying processes. Progress in Physical Geography, vol. 21, no. 1, pp. 23‑50.
http://dx.doi.org/10.1177/030913339702100103 -
17. Mazvimav i D., 1989. Analysis of annual rainfall in Zimbabwe for trends and periodicities, 1891–1988. Geographical Journal of Zimbabwe, vol. 20, pp. 42‑52.
18. Mazvimav i D., 2008. Investigating possible changes of extreme annual rainfall in Zimbabwe. Hydrology and Earth System Sciences Discussions, vol. 5, no. 4, pp. 1765‑1785.
http://dx.doi.org/10.5194/hessd-5-1765-2008 -
19. Muhamma d T.U., Reason C.J.C., 2004. Dry spell frequencies and their variability over Southern Africa. Climate Research, vol. 26, no. 3, pp. 199‑211.
20. Mupangwa W., 2008. Water and nitrogen management for risk mitigation in semiarid cropping systems. Phuthaditjhaba: University of Free State. Department of Soil, Crop and Climate Sciences [unpublished PhD thesis].
21. Mupangwa W., Walker S., Twomlow S., 2011. Start, end and dry spells of the growing season in semi‑arid southern Zimbabwe. Journal of Arid Environments, vol. 75, no. 11, pp. 1097‑1104.
http://dx.doi.org/10.1016/j.jaridenv.2011.05.011 -
22. Nicholson S.E., 2000. The nature of rainfall variability over Africa on time scales of decades to millennia. Global and Planetary Change, vol. 26, iss. 1‑3, pp. 137‑158.
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23. Nú-ez J.H., Verbist K., Wallis J.R., Schaefer M.G., Morales L., Cornelis W.M., 2011. Regional frequency analysis for mapping drought events in north‑central Chile. Journal of Hydrology, vol. 405, iss. 3‑4, pp. 352‑366.
24. Nyakudya I.W., Stroosnijder L., 2011. Water management options based on rainfall analysis for rainfed maize (Zea mays L.) production in Rushinga district, Zimbabwe. Agricultural Water Management, vol. 98, iss. 10, pp. 1649‑1659.
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25. OCHA, 2009. Zimbabwe: Agro‑ecological zones map (as of 05 Oct 2009). http://reliefweb.int/map/zimbabwe/zimbabwe-agro-ecologi ‑cal‑zones‑map‑05‑oct‑2009 [8 January 2013].
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27. Satyanarayana P., Sriniva s V.V., 2011. Regionalization of precipitation in data sparse areas using large scale atmospheric variables – A fuzzy clustering approach. Journal of Hydrology, vol. 405, iss. 3‑4, pp. 462‑473.
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28. Some'e B.S., Ezani A., Taba ri H., 2012. Spatiotemporal trends of aridity index in arid and semi‑arid regions of Iran. Theoretical Applied Climatology, vol. 111, no. 1‑2, pp. 149‑160.
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30. Thierfelder C., Wall P.C., 2010. Investigating conservation agriculture (CA) systems in Zambia and Zimbabwe to mitigate future effects of climate change. Journal of Crop Improvement, vol. 24, no. 2, pp. 113‑121.
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31. Twomlow S.J., Steyn J.T, du Preez C.C., 2006. Dryland farming in southern Africa. [in:] G.A. Petersen, W.P. Unger, W.A. Payne (eds.), Dryland agriculture. Agronomy, no. 23, Madison (Wis.): American Society of Agronomy, pp. 769‑836.
32. Tyson P., Preston‑Whyte R., 2000. The weather and climate of Southern Africa. Cape Town: Oxford University Press, 396 pp.
33. Unganai L., 1996. Historic and future climatic change in Zimbabwe. Climate Research, vol. 6, no. 2, pp. 137‑145.
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34. Unganai L.S., Manson S.J., 2002. Long‑range predictability of Zimbabwe summer rainfall. International Journal of Climatology, vol. 22, no. 9, pp. 1091‑1103.
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35. Van Oosterhout S.A.M., 1996. Coping strategies of smallholder farmers with adverse weather conditions regarding seed deployment of small grain crops during 1994/1995 cropping season in Zimbabwe. Harare: SADC/GTZ, 376 pp.
36. Vincent V., Thoma s R.G., Stap les R.R., 1960. An agricultural survey of Southern Rhodesia: Part I: Agro‑ecological survey. Salisbury: Government Printer, 147 pp.
37. Vörösma rty C.J., Douglas E.M., Green P.A., Revenga C., 2005. Geospatial indicators of emerging water stress: an application to Africa. AMBIO: A Journal of Human Environment, vol. 34, no. 3, pp. 230‑236.
38. Wilhite D.A., 2002. Combating drought through preparedness. Natural Resources Forum, vol. 26, no. 3, pp. 275‑285.
http://dx.doi.org/10.1111/1477-8947.00030 -

Czasopismo/Seria/cykl:

Geographia Polonica

Tom:

86

Zeszyt:

4

Strona pocz.:

313

Strona końc.:

326

Typ zasobu:

Tekst

Szczegółowy typ zasobu:

Artykuł

Format:

Rozmiar pliku 2,7 MB ; application/pdf

Identyfikator zasobu:

0016-7282 ; 10.7163/GPol.2013.26

Źródło:

CBGiOS. IGiPZ PAN, sygn.: Cz.2085, Cz.2173, Cz.2406 ; kliknij tutaj, żeby przejść

Język:

eng

Prawa:

Prawa zastrzeżone - dostęp nieograniczony

Zasady wykorzystania:

Zasób chroniony prawem autorskim. Korzystanie dozwolone w zakresie określonym przez przepisy o dozwolonym użytku.

Digitalizacja:

Instytut Geografii i Przestrzennego Zagospodarowania Polskiej Akademii Nauk

Lokalizacja oryginału:

Centralna Biblioteka Geografii i Ochrony Środowiska Instytutu Geografii i Przestrzennego Zagospodarowania PAN

Dofinansowane ze środków:

Unia Europejska. Europejski Fundusz Rozwoju Regionalnego ; Program Operacyjny Innowacyjna Gospodarka, lata 2010-2014, Priorytet 2. Infrastruktura strefy B + R

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