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Experimental investigation of the effect of vegetation on dam break flood waves
by
Aksoy, Aysegul Ozgenc
, Oguzhan, Semire
in
Dam break
/ Dam failure
/ Disasters
/ Flood wave
/ Flood waves
/ Floods
/ Industrial development
/ industrialization
/ Physical model
/ Population density
/ Shape
/ temporal variation
/ Temporal variations
/ Urkmez Dam
/ Vegetation
/ Vegetation effect
/ Vegetation effects
/ Water depth
/ Wave propagation
2020
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Experimental investigation of the effect of vegetation on dam break flood waves
by
Aksoy, Aysegul Ozgenc
, Oguzhan, Semire
in
Dam break
/ Dam failure
/ Disasters
/ Flood wave
/ Flood waves
/ Floods
/ Industrial development
/ industrialization
/ Physical model
/ Population density
/ Shape
/ temporal variation
/ Temporal variations
/ Urkmez Dam
/ Vegetation
/ Vegetation effect
/ Vegetation effects
/ Water depth
/ Wave propagation
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Experimental investigation of the effect of vegetation on dam break flood waves
by
Aksoy, Aysegul Ozgenc
, Oguzhan, Semire
in
Dam break
/ Dam failure
/ Disasters
/ Flood wave
/ Flood waves
/ Floods
/ Industrial development
/ industrialization
/ Physical model
/ Population density
/ Shape
/ temporal variation
/ Temporal variations
/ Urkmez Dam
/ Vegetation
/ Vegetation effect
/ Vegetation effects
/ Water depth
/ Wave propagation
2020
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Experimental investigation of the effect of vegetation on dam break flood waves
Journal Article
Experimental investigation of the effect of vegetation on dam break flood waves
2020
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Overview
Dams have an important role in the industrial development of countries. Irrespective of the reason for dam break, the flood can cause devastating disasters with loss of life and property especially in densely populated areas. In this study, the effects of the vegetation on the flood wave propagation in case of dam break were investigated experimentally by using the distorted physical model of Ürkmez Dam. The horizontal and vertical scales of the distorted physical model are 1/150 and 1/30, respectively. The dam break scenarios were achieved by means of a gate of rectangular and triangular shape. The results obtained from experiments performed with vegetation were compared and interpreted with those obtained from experiments at which the vegetation configuration was absent. The analysis of the experimental data showed that the presence of vegetation causes a significant decrease in water depths as the flood wave propagates to the downstream and greatly reduces its impact on the settlements. It is also revealed that dam break shape plays an important role in temporal variation of flood wave.
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