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Effect of the Bed-Sediment Layer on the Scour Caused by a Jet

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Date

2016

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Abstract

Scour caused by a water jet impinging the bedsediment layer is a significant concern for hydraulic engineers. Although several studies investigated the maximum scour depth on the non-cohesive bed-sediment layer, the effect of the bed-sediment layer’s thickness on the scour was not studied. This study investigated the effect of the thickness of the non-cohesive sediment layer at the canal bed on the depth of the scour caused by a water jet. The dimensionless parameters affecting the depth of the scour were obtained via dimensional analysis. Experiments were conducted on two different, non-cohesive bed-sediment layers at the bottom of a rectangular canal for different jet Froude numbers. Experimental results indicated that the depth of the scour increases with the thickness of the bed-sediment layer; this is because as the thickness of the sediment layer increases, the penetration depth of the air bubbles (dragged and enforced by the impinging water jet) through the sediment layer just under the scour hole increases. Due to the buoyancy force, as the air bubbles rise upward, they apply uplift forces and dynamic effects onto sediment particles, dislodging, suspending, and carrying the sediment particles away from the bed. If the thickness of the sediment layer is increased beyond a limiting value for a given flow condition, the maximum depth of the scour does not change (it remains almost constant). The effect of the thickness of the bed-sediment layer on the depth of the scour is present but not excessively large.

Description

Keywords

Channel Flow, Hydraulic Structures, Sand Layer, Scour, Water Jet

Fields of Science

0208 environmental biotechnology, 0207 environmental engineering, 02 engineering and technology

Citation

Taştan, Kerem; Koçak, Peli̇n Pınar; Yıldırım, Nevzat (2016). "Effect of the Bed-Sediment Layer on the Scour Caused by a Jet", Arabian Journal for Science and Engineering, Vol. 41, pp. 4029-4037.

WoS Q

Q2

Scopus Q

Q1
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OpenCitations Citation Count
16

Source

Arabian Journal for Science and Engineering

Volume

41

Issue

Start Page

4029

End Page

4037
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Citations

CrossRef : 5

Scopus : 16

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Mendeley Readers : 9

Page Views

228

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6

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