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69830

MINIMIZING THE DIVERTED SEDIMENT AT LATERAL INTAKES USING SUBMERGED VANES

Article

Last updated: 04 Jan 2025

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Abstract

The present paper shows an experimental study that was executed in order to investigate the
efficiency of submerged vanes to minimize the sediment that entered the intake channel. Forty
four experiments were carried out considering various vane heights, angles, and positions under
different flow conditions. A case of flat floor without vanes is included to estimate the influence of
using the submerged vanes technique. Obtained results were analyzed and graphically presented in
order to determine the optimum vane characteristics

DOI

10.21608/erjm.2008.69830

Keywords

Submerged vane, intake, Physical model, Sedimentation

Authors

First Name

Fahmy, S.

Last Name

Abdel- al-halem

MiddleName

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Affiliation

Hydraulic Research Institute, National Water Research Centre, Egypt

Email

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City

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Orcid

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First Name

S. A

Last Name

Ibrahim

MiddleName

-

Affiliation

Hydraulic Research Institute, National Water Research Centre, Egypt

Email

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City

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Orcid

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First Name

Esam Y.

Last Name

Helal

MiddleName

-

Affiliation

Civil Engineering Department, Faculty of Engineering, Minoufyia University, Egypt.

Email

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City

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Orcid

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First Name

M. F

Last Name

Sobeih

MiddleName

-

Affiliation

Civil Engineering Department, Faculty of Engineering, Minoufyia University, Egypt.

Email

-

City

-

Orcid

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Volume

31

Article Issue

4

Related Issue

10537

Issue Date

2008-10-01

Receive Date

2020-02-03

Publish Date

2008-10-01

Page Start

401

Page End

405

Print ISSN

1110-1180

Online ISSN

3009-6944

Link

https://erjm.journals.ekb.eg/article_69830.html

Detail API

https://erjm.journals.ekb.eg/service?article_code=69830

Order

11

Type

Original Article

Type Code

1,118

Publication Type

Journal

Publication Title

ERJ. Engineering Research Journal

Publication Link

https://erjm.journals.ekb.eg/

MainTitle

MINIMIZING THE DIVERTED SEDIMENT AT LATERAL INTAKES USING SUBMERGED VANES

Details

Type

Article

Created At

22 Jan 2023