Congo Basin Hydrology, Climate, and Biogeochemistry. Группа авторов
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26 Epule, E. T., Peng, C., Lepage, L., & Chen, Z. (2014). The causes, effects and challenges of Sahelian droughts: a critical review. Regional Environmental Change, 14(1), 145–156. doi: 10.1007/s10113‐013‐0473‐z
27 FAO (2016). Climate change and food security: risks and responses. Food and Agricultural Organisation of the United Nations. Retrieved from http://www.fao.org/3/a‐i5188e.pdf. 20 September 2016.
28 Farnsworth, A., White, E., Williams, C. J., Black, E., & Kniveton, D. R. (2011). Understanding the Large Scale Driving Mechanisms of Rainfall Variability over Central Africa. In: Kniveton, D. R., &Williams, C. J. R. (Eds.), African Climate and Climate Change: Physical, Social and Political Perspectives, pp. 101–122. Springer Netherlands: Dordrecht. doi: 10.1007/978‐90‐481‐3842‐5_5.
29 Ferreira, V., Montecino, H., Ndehedehe, C., Heck, B., Gong, Z., Westerhaus, M., & de Freitas, S. (2018). Space‐based observations of crustal deflections for drought characterization in brazil. Science of The Total Environment, 644, 256–273. doi: 10.1016/j.scitotenv.2018.06.277
30 Freitas, A. (2013). Water as a stress factor in sub‐Saharan Africa. European Union Institute for Security Studies, pages 1–4. Retrieved from http://www.iss.europa.eu/uploads/media/Brief_12.pdf. 12 July 2017.
31 Gal, L., Grippa, M., Hiernaux, P., Pons, L., & Kergoat, L. (2017). The paradoxical evolution of runoff in the pastoral Sahel: analysis of the hydrological changes over the Agoufou watershed (Mali) using the KINEROS‐2 model. Hydrology and Earth System Sciences, 21(9), 4591–4613. doi: 10.5194/hess‐21‐4591‐2017
32 Getirana, A., Jung, H. C., Hoek, J. V. D., & Ndehedehe, C. E. (2020). Hydropower dam operation strongly controls Lake Victoria’s freshwater storage variability. Science of The Total Environment, 726, 138343. https://doi.org/10.1016/j.scitotenv.2020.138343
33 Getirana, A., Kumar, S., Girotto, M., & Rodell, M. (2017a). Rivers and floodplains as key components of global terrestrial water storage variability. Geophysical Research Letters, 44(20), 10,359–10,368. doi: 10.1002/2017GL074684
34 Getirana, A., Peters‐Lidard, C., Rodell, M., & Bates, P. D. (2017b). Trade‐off between cost and accuracy in large‐scale surface water dynamic modeling. Water Resources Research, 53(6), 4942–4955. https://doi.org/10.1002/2017WR020519
35 Getirana, A. C. V., Boone, A., Yamazaki, D., Decharme, B., Papa, F., & Mognard, N. (2012). The hydrological modeling and analysis platform (HyMAP): Evaluation in the Amazon basin. Journal of Hydrometeorology, 13(6), 1641–1665. doi: 10.1175/JHM‐D‐12‐021.1
36 Gidley, S. L. (2009). Using high resolution satellite imagery to map aquatic macrophytes on multiple lakes in northern Indiana. Unpublished Msc thesis, Indiana University. Retrieved from https://core.ac.uk/download/pdf/46956355.pdf. 15 April 2019.
37 Haley, M. R. (2017). K‐fold cross validation performance comparisons of six naive portfolio selection rules: how naive can you be and still have successful out‐of‐sample portfolio performance? Annals of Finance, 13(3), 341–353. doi: 10.1007/s10436‐017‐0301‐4
38 Hall, J. W., Grey, D., Garrick, D., Fung, F., Brown, C., Dadson, S. J., & Sadoff, C. W. (2014). Coping with the curse of freshwater variability. Science, 346(6208), 429–430. doi: 10.1126/science.1257890
39 Hua, W., Zhou, L., Chen, H., Nicholson, S. E., Raghavendra, A., & Jiang, Y. (2016). Possible causes of the Central Equatorial African long‐term drought. Environmental Research Letters, 11(12), 124002. doi: 10.1088/1748‐9326/11/12/124002
40 Huffman, G. J., Adler, R. F., Bolvin, D. T., Gu, G., Nelkin, E. J., Bowman, K. P., et al. (2007). The TRMM Multisatellite Precipitation Analysis (TMPA): Quasi‐global, multiyear, combined‐sensor precipitation estimates at fine scales. Journal of Hydrometeorology, 8, 38–55. doi: 10.1175/JHM560.1
41 Ivits, E., Horion, S., Fensholt, R., & Cherlet, M. (2014). Drought footprint on European ecosystems between 1999 and 2010 assessed by remotely sensed vegetation phenology and productivity. Global Change Biology, 20(2), 581–593. doi: 10.1111/gcb.12393
42 Jolliffe, I. T. (2002). Principal Component Analysis (second edition). Springer Series in Statistics. Springer, New York.
43 Jung, M., Reichstein, M., Ciais, P., Seneviratne, S. I., Sheffield, J., Goulden, M. L., et al. (2010). Recent decline in the global land evapotranspiration trend due to limited moisture supply. Nature, 467(7318), 951–954. https://doi.org/10.1038/nature09396
44 Keddy, P. A., Fraser, L. H., Solomeshch, A. I., Junk, W. J., Campbell, D. R., Arroyo, M. T. K., & Alho, C. J. R. (2009). Wet and wonderful: The world’s largest wetlands are conservation priorities. BioScience, 59(1), 39–51. doi: 10.1525/bio.2009.59.1.8
45 Kennard, M. J., Pusey, B. J., Olden, J. D., Mackay, S. J., Stein, J. L., & Marsh, N. (2010). Classification of natural flow regimes in Australia to support environmental flow management. Freshwater Biology, 55(1), 171–193. doi: 10.1111/j.1365‐2427.2009.02307.x
46 Kiem, A. S., Johnson, F., Westra, S., van Dijk, A., Evans, J. P., O’Donnell, A., et al. (2016). Natural hazards in Australia: droughts. Climatic Change, 139(1), 37–54. doi: 10.1007/s10584‐016‐1798‐7
47 Koster, R. D., Dirmeyer, P. A., Guo, Z., Bonan, G., Chan, E., Cox, P., et al. (2004). Regions of strong coupling between soil moisture and precipitation. Science, 305(5687), 1138–1140. doi: 10.1126/science.1100217
48 Kubiak‐Wójcicka, K., & Bąk, B. (2018). Monitoring of meteorological and hydrological droughts in the Vistula basin (Poland). Environmental Monitoring and Assessment, 190(11), 691. doi: 10.1007/s10661‐018‐7058‐8
49 Kummerow, C., Simpson, J., Thiele, O., Barnes, W., Chang, A. T. C., Stocker, E., et al. (2000). The status of the Tropical Rainfall Measuring Mission (TRMM) after two years in orbit. Journal of Applied Meteorology, 39(12), 1965–1982. doi: 10.1175/1520‐0450(2001)040<1965:TSOTTR>2.0.CO;2
50 Lee, H., Beighley, R. E., Alsdorf, D., Jung, H. C., Shum, C., Duan, J., et al. (2011). Characterization of terrestrial water dynamics in the Congo Basin using GRACE and satellite radar altimetry. Remote Sensing of Environment, 115(12), 3530 – 3538. doi: 10.1016/j.rse.2011.08.015
51 Lee, H., Jung, H. C., Yuan, T., Beighley, R. E., & Duan, J. (2014). Controls of terrestrial water storage changes over the Central Congo Basin determined by integrating Palsar ScanSar, Envisat Altimetry, and Grace data. Remote Sensing of the Terrestrial Water Cycle, Geophysical Monograph, 206, 117–129. doi: 10.1002/9781118872086.ch7/pdf
52 Li, K., Coe, M., Ramankutty, N., & Jong, R. D. (2007). Modeling the hydrological impact of land‐use change in West Africa. Journal of Hydrology, 337(3–4), 258–268. doi: 10.1016/j.jhydrol.2007.01.038
53 Loon, A. V. (2013). On the propagation of drought. how climate and catchment characteristics influence hydrological drought development and recovery. PhD thesis, Wageningen University, Wageningen, NL, page 198 p. Retrieved from http://library.wur.nl/WebQuery/wurpubs/438510. 1 February 2018.
54 Luthcke,