Beta
133196

Optimal Utilization of Coastal Unonfined Aquifers.

Article

Last updated: 22 Jan 2023

Subjects

-

Tags

Irrigation and Hydraulic Engineering

Abstract

This research concerns with optimal utilization of unconfined coastal aquifers under different constraints. This problem is a complicated, nonlinear, and constrained one. Therefore, the Genetic Algorithm nonlinear optimization method was selected to handle the present problem. Analytical solution was applied for the groundwater flow equation under assumption of steady sharp interface in homogenous aquifer. Image theory and the superposition principle were the main tools used through the analytical procedure. A Fortran program was written to apply the mathematical concepts of the problem. The method was applied to aquifer system underlain the City of Miami Beach at north of Spain. 

DOI

10.21608/bfemu.2020.133196

Keywords

Coastal Unconfined Aquifer, Well System, Genetic Algorithm, Analytical Solution. Image Theory, Superposition Principle, Optimal Strategy

Authors

First Name

Hossam

Last Name

Abdel-Gawad Mohamed

MiddleName

A. A.

Affiliation

Irrigation and Hydraulic Department., Faculty of Civil Engineering., El- Mansoura University., Mansoura., Egypt

Email

-

City

Mansoura

Orcid

-

First Name

Mohamed Tarek

Last Name

Shamaa

MiddleName

El-Said Ibrahim

Affiliation

Irrigation and Hydraulic Department., Faculty of Civil Engineering.,El- Mansoura University., Mansoura., Egypt

Email

-

City

Mansoura

Orcid

-

Volume

29

Article Issue

2

Related Issue

19656

Issue Date

2004-06-01

Receive Date

2004-04-11

Publish Date

2020-12-28

Page Start

20

Page End

32

Print ISSN

1110-0923

Online ISSN

2735-4202

Link

https://bfemu.journals.ekb.eg/article_133196.html

Detail API

https://bfemu.journals.ekb.eg/service?article_code=133196

Order

5

Type

Research Studies

Type Code

1,205

Publication Type

Journal

Publication Title

MEJ. Mansoura Engineering Journal

Publication Link

https://bfemu.journals.ekb.eg/

MainTitle

-

Details

Type

Article

Created At

22 Jan 2023