Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Daniel Teka is active.

Publication


Featured researches published by Daniel Teka.


Physical Geography | 2013

Effects of land use, slope gradient, and soil and water conservation structures on runoff and soil loss in semi-arid Northern Ethiopia

Gebeyehu Taye; Jean Poesen; Bas Van Wesemael; Matthias Vanmaercke; Daniel Teka; Jozef Deckers; Tom Goosse; Willem Maetens; Jan Nyssen; Vincent Hallet; Nigussie Haregeweyn

Land degradation and recurrent drought are the major threats to rain-fed agriculture in the semi-arid Ethiopian highlands. Water harvesting has become a priority in the Tigray region since 1990. However, the success of water harvesting in reservoirs is limited due to reduced inflow. The aim of this study was to investigate the effects of typical land-use types, slope gradients, and different soil and water conservation (SWC) structures on runoff and soil loss at the runoff-plot scale. Six runoff measuring sites, corresponding to three slope gradients, were established for cropland (cultivated land for annual crop production) and rangeland (heavily grazed land on hillslopes with high rock-fragment cover) at Mayleba catchment in Tigray, Ethiopia. SWC structures tested were stone bunds, trenches, and stone bunds with trenches, in addition to control plots. In total, 21 large runoff plots (with lengths of 60 to 100 m) were monitored daily for runoff production and soil loss during the main rainy season (July–September) in 2010. The results show that the seasonal runoff coefficient (RCs) representing the fraction of rainfall measured as runoff was much higher for rangeland (0.38 < RCs < 0.50) compared to that for cropland (0.11 < RCS < 0.15). Seasonal soil loss (SLs) values were five to six times larger on rangeland (28.6 < SLs < 50.0 ton ha−1) compared to that for cropland (4.6 < SLs < 11.4 ton ha−1). Stone bunds with trenches were the most effective SWC structures in reducing runoff and soil loss. With the same SWC structures installed, RCs and SLs for both rangeland and cropland tend to decrease with increasing slope gradient mainly due to a corresponding increase in rock-fragment cover. The effects of SWC structures on runoff production and soil loss are considerable; hence, it is crucial to consider these effects for optimal design of water-harvesting schemes such as micro-dams that collect and store surface runoff for irrigation development in the Ethiopian highlands.


Zeitschrift Fur Geomorphologie | 2015

Evolution of the effectiveness of stone bunds and trenches in reducing runoff and soil loss in the semi-arid Ethiopian highlands

Gebeyehu Taye; Jean Poesen; Matthias Vanmaercke; Bas Van Wesemael; Lotte Martens; Daniel Teka; Jan Nyssen; Jozef Deckers; Veerle Vanacker; Nigussie Haregeweyn; Vincent Hallet


Catena | 2013

Evaluating the performance of reservoirs in semi-arid catchments of Tigray: Tradeoff between water harvesting and soil and water conservation

Daniel Teka; B. van Wesemael; Veerle Vanacker; Jean Poesen; Vincent Hallet; Gebeyehu Taye; Jozef Deckers; Nigussie Haregeweyn


International congress 2013 : sustainable livelihood in the tropical drylands : book of abstracts | 2013

Effects of land use, slope gradient and soil and water conservation techniques, on runoff and soil loss in a semi-arid environment

Gebeyehu Taye; Jean Poesen; Bas Van Wesemael; Tom Goosse; Daniel Teka; Jozef Deckers; Jan Nyssen; Vincent Hallet; Nigussie Haregeweyn; Willem Maetens


Land Degradation & Development | 2018

DETERMINING RUSLE P- AND C-factorS for stone bunds and trenches in rangeland and cropland, North Ethiopia

Gebeyehu Taye; Matthias Vanmaercke; Jean Poesen; Bas Van Wesemael; Samuale Tesfaye; Daniel Teka; Jan Nyssen; Jozef Deckers; Nigussie Haregeweyn


International Journal of Water | 2018

Evaluating water productivity of tomato, pepper and Swiss chard under clay pot and furrow irrigation technologies in semi-arid areas of northern Ethiopia

Amanuel A. Gebru; Alemiea Araya; Solomon Habtu; Tsegay Wolde-Georgis; Daniel Teka; Lucieta Guerreiro Martorano


The EGU General Assembly | 2017

Determining RUSLE P-factors for stonebunds and trenches in rangeland and cropland, Northern Ethiopia

Gebeyehu Taye; Jean Poesen; Matthias Vanmaercke; Bas Van Wesemael; Samuel Tesfay; Daniel Teka; Jan Nyssen; Jozef Deckers; Nigussie Haregeweyn


TropiLakes2015 international conference on tropical lakes in a changing environment : water, land, biology, climate and humans | 2015

Estimating the hydrological response of soil and water conservatiostructures: Is the Curve Number method applicable?

Gebeyehu Taye; Jean Poesen; Matthias Vanmaercke; Bas Van Wesemael; Samuel Tesfay; Daniel Teka; Jan Nyssen; Jozef Deckers; Nigussie Haregeweyn


Archive | 2015

Evaluating Water and Economic Productivity of Using Bar Shaped Clay Pot Subsurface Irrigation Technology Sustainable Production in the Dry Lands

Amanuel Gebru Abraha; Araya Alemie Berhe; Tsegay Wolde-Georgis; Solomon Habtu Misgina; Daniel Teka


The EGU General Assembly | 2014

Effectiveness of soil and water conservation structures in reducing runoff and soil loss for different land use and slope gradients: case study from northern Ethiopia

Gebeyehu Taye; Jean Poesen; Bas Vanwesemael; Matthias Vanmaercke; Daniel Teka; Jozef Deckers; Tom Goosse; Willem Maetens; Jan Nyssen; Vincent Hallet; Nigussie Haregeweyn

Collaboration


Dive into the Daniel Teka's collaboration.

Top Co-Authors

Avatar

Jean Poesen

Research Foundation - Flanders

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Jozef Deckers

Katholieke Universiteit Leuven

View shared research outputs
Top Co-Authors

Avatar

Nigussie Haregeweyn

Katholieke Universiteit Leuven

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Bas Van Wesemael

Université catholique de Louvain

View shared research outputs
Top Co-Authors

Avatar

Matthias Vanmaercke

Research Foundation - Flanders

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Bas van Wesemael

Katholieke Universiteit Leuven

View shared research outputs
Top Co-Authors

Avatar

Lotte Martens

Research Foundation - Flanders

View shared research outputs
Researchain Logo
Decentralizing Knowledge