75
Gaubi I, Chaabani A, Mammou AB, Hamza M (2017) A GIS-based soil erosion prediction using
the Revised Universal Soil Loss Equation (RUSLE)(Lebna watershed, Cap Bon, Tunisia). Nat
Hazards 86:219–239
Gedefaw M, Yan D, Wang H, Qin T, Girma A, Abiyu A, Batsuren D (2018) Innovative Trend
Analysis of Annual and Seasonal Rainfall Variability in Amhara Regional State. Ethiopia
Atmos 9:326
Gelagay H (2016) RUSLE and SDR Model Based Sediment Yield Assessment in a GIS and
Remote Sensing Environment; A Case Study of Koga Watershed, Upper Blue Nile Basin.
Ethiopia Hydrol Curr Res 7:2
Gu C, Mu X, Gao P, Zhao G, Sun W, Yu Q (2018) Rainfall erosivity and sediment load over the
Poyang Lake Basin under variable climate and human activities since the 1960s. Theor Appl
Climatol:1–16
Gupta S, Kumar S (2017) Simulating climate change impact on soil erosion using RUSLE model−
A case study in a watershed of mid-Himalayan landscape. J Earth Syst Sci 126:43
Gvozdetsky NA, Mikhailov NI (1978) Asian part. In: Physical geography of the USSR. 3 edn.
Mysl, Moscow, p 572
Hagg W, Braun LN, Kuhn M, Nesgaard TI (2007) Modelling of hydrological response to climate
change in glacierized Central Asian catchments. J Hydrol 332:40–53. https://doi.org/10.1016/j.
jhydrol.2006.06.021
Hamidov A, Helming K, Balla D (2016) Impact of agricultural land use in Central Asia: a review.
Agron Sustain Dev 36:6. https://doi.org/10.1007/s13593- 015- 0337- 7
Hijmans RJ, Cameron SE, Parra JL, Jones PG, Jarvis A (2005) Very high resolution interpolated
climate surfaces for global land areas. Int J Climatol 25:1965–1978
Hu Z, Zhou Q, Chen X, Qian C, Wang S, Li J (2017) Variations and changes of annual precipitation
in Central Asia over the last century. Int J Climatol 37:157–170
Hu Z et al (2018) “Dry gets drier, wet gets wetter”: A case study over the arid regions of central
Asia. Int J Climatol
Ibatullin S, Yasinsky V, Mironenkov A (2009) Impacts of climate change on water resources in
Central Asia Sector report of the Eurasian development bank 42
Immerzeel W, Pellicciotti F, Bierkens M (2013) Rising river flows throughout the twenty-first
century in two Himalayan glacierized watersheds. Nat Geosci 6:742–745
Issanova G, Abuduwaili J (2017) Natural conditions of Central Asia and land-cover changes. In:
Aeolian proceses as Dust Storms in the Deserts of Central Asia and Kazakhstan. Springer,
pp 29-49
Issanova G, Abuduwaili J, Kaldybayev A, Semenov O, Dedova T (2015) Dust storms in Kazakhstan:
frequency and division. J Geol Soc India 85:348–358
Issanova G, Jilili R, Abuduwaili J, Kaldybayev A, Saparov G, Yongxiao G (2018) Water availability and state of water resources within water-economic basins in Kazakhstan. Paddy Water
Environ 16:183–191
Jahun B, Ibrahim R, Dlamini N, Musa S (2015) Review of soil erosion assessment using RUSLE
model and GIS. J Biol Agric Healthcare 5:36–47
Jarvis A, Reuter HI, Nelson A, Guevara E (2008) Hole-filled SRTM for the globe Version 4
Karamage F et al (2016) Extent of cropland and related soil erosion risk in Rwanda. Sustainability
8:609
Kendall M (1975) Rank correlation methods, 4th edn. Charles Griffin, San Francisco
Kenzhebaev R, Barandun M, Kronenberg M, Chen Y, Usubaliev R, Hoelzle M (2017) Mass balance observations and reconstruction for Batysh Sook Glacier, Tien Shan, from 2004 to 2016.
Cold Reg Sci Technol 135:76–89. https://doi.org/10.1016/j.coldregions.2016.12.007
Khitrov NB, Ivanov AL, Zavalin AA (2007) Problems of degradation, protection and ways of
recovery productivity of agricultural land. Vestnik Orel GAU:29–32. (in Russian)
Kinnell P (2010) Event soil loss, runoff and the Universal Soil Loss Equation family of models: A
review. J Hydrol 385:384–397
References
Gaubi I, Chaabani A, Mammou AB, Hamza M (2017) A GIS-based soil erosion prediction using
the Revised Universal Soil Loss Equation (RUSLE)(Lebna watershed, Cap Bon, Tunisia). Nat
Hazards 86:219–239
Gedefaw M, Yan D, Wang H, Qin T, Girma A, Abiyu A, Batsuren D (2018) Innovative Trend
Analysis of Annual and Seasonal Rainfall Variability in Amhara Regional State. Ethiopia
Atmos 9:326
Gelagay H (2016) RUSLE and SDR Model Based Sediment Yield Assessment in a GIS and
Remote Sensing Environment; A Case Study of Koga Watershed, Upper Blue Nile Basin.
Ethiopia Hydrol Curr Res 7:2
Gu C, Mu X, Gao P, Zhao G, Sun W, Yu Q (2018) Rainfall erosivity and sediment load over the
Poyang Lake Basin under variable climate and human activities since the 1960s. Theor Appl
Climatol:1–16
Gupta S, Kumar S (2017) Simulating climate change impact on soil erosion using RUSLE model−
A case study in a watershed of mid-Himalayan landscape. J Earth Syst Sci 126:43
Gvozdetsky NA, Mikhailov NI (1978) Asian part. In: Physical geography of the USSR. 3 edn.
Mysl, Moscow, p 572
Hagg W, Braun LN, Kuhn M, Nesgaard TI (2007) Modelling of hydrological response to climate
change in glacierized Central Asian catchments. J Hydrol 332:40–53. https://doi.org/10.1016/j.
jhydrol.2006.06.021
Hamidov A, Helming K, Balla D (2016) Impact of agricultural land use in Central Asia: a review.
Agron Sustain Dev 36:6. https://doi.org/10.1007/s13593- 015- 0337- 7
Hijmans RJ, Cameron SE, Parra JL, Jones PG, Jarvis A (2005) Very high resolution interpolated
climate surfaces for global land areas. Int J Climatol 25:1965–1978
Hu Z, Zhou Q, Chen X, Qian C, Wang S, Li J (2017) Variations and changes of annual precipitation
in Central Asia over the last century. Int J Climatol 37:157–170
Hu Z et al (2018) “Dry gets drier, wet gets wetter”: A case study over the arid regions of central
Asia. Int J Climatol
Ibatullin S, Yasinsky V, Mironenkov A (2009) Impacts of climate change on water resources in
Central Asia Sector report of the Eurasian development bank 42
Immerzeel W, Pellicciotti F, Bierkens M (2013) Rising river flows throughout the twenty-first
century in two Himalayan glacierized watersheds. Nat Geosci 6:742–745
Issanova G, Abuduwaili J (2017) Natural conditions of Central Asia and land-cover changes. In:
Aeolian proceses as Dust Storms in the Deserts of Central Asia and Kazakhstan. Springer,
pp 29-49
Issanova G, Abuduwaili J, Kaldybayev A, Semenov O, Dedova T (2015) Dust storms in Kazakhstan:
frequency and division. J Geol Soc India 85:348–358
Issanova G, Jilili R, Abuduwaili J, Kaldybayev A, Saparov G, Yongxiao G (2018) Water availability and state of water resources within water-economic basins in Kazakhstan. Paddy Water
Environ 16:183–191
Jahun B, Ibrahim R, Dlamini N, Musa S (2015) Review of soil erosion assessment using RUSLE
model and GIS. J Biol Agric Healthcare 5:36–47
Jarvis A, Reuter HI, Nelson A, Guevara E (2008) Hole-filled SRTM for the globe Version 4
Karamage F et al (2016) Extent of cropland and related soil erosion risk in Rwanda. Sustainability
8:609
Kendall M (1975) Rank correlation methods, 4th edn. Charles Griffin, San Francisco
Kenzhebaev R, Barandun M, Kronenberg M, Chen Y, Usubaliev R, Hoelzle M (2017) Mass balance observations and reconstruction for Batysh Sook Glacier, Tien Shan, from 2004 to 2016.
Cold Reg Sci Technol 135:76–89. https://doi.org/10.1016/j.coldregions.2016.12.007
Khitrov NB, Ivanov AL, Zavalin AA (2007) Problems of degradation, protection and ways of
recovery productivity of agricultural land. Vestnik Orel GAU:29–32. (in Russian)
Kinnell P (2010) Event soil loss, runoff and the Universal Soil Loss Equation family of models: A
review. J Hydrol 385:384–397
References
