Indirect Estimation of Deep Percolation Using Soil Water Balance Equation and NASA Land Simulation Model (LIS) for More Sustainable Water Management
Last updated: 01 Jan 2025
10.21608/ejss.2019.17427.1310
GIS, Remote Sensing, Water balance, Nile River, Agriculture and global models
Maha
Elbana
Soil and Water Sciences Department, Faculty of Agriculture, Beni-Suef University
maha.elbana@agr.bsu.edu.eg
Beni-Suef
orcid.org/0000-0002-
Khaled
Refaie
Application Dept., Central Laboratory for Agricultural Climate, Agricultural Research Center, Dokki, Giza, Egypt.
khaled_refaie@yahoo.com
Mohamed
Elshirbeny
Ahmed
National Authority for Remote Sensing and Space Sciences (NARSS), Cairo, Egypt
mshirbeny@yahoo.com
Monofiya
Mohamed
AbdelRahman
National Authority for Remote Sensing and Space Sciences (NARSS), Cairo, Egypt
maekaoud@yahoo.com
Cairo
https://orcid.org/00
Bassam
Abdellatif
National Authority for Remote Sensing and Space Sciences (NARSS), Cairo, Egypt
bassam.abdellatif@narss.sci.eg
Reda
Elgendy
National Authority for Remote Sensing and Space Sciences (NARSS), Cairo, Egypt
reda.algendy@narss.sci.eg
Wael
Attia
National Authority for Remote Sensing and Space Sciences (NARSS), Cairo, Egypt
wael.attia@narss.sci.eg
59
4
9676
2019-12-01
2019-09-28
2019-12-01
363
383
0302-6701
2357-0369
https://ejss.journals.ekb.eg/article_52134.html
https://ejss.journals.ekb.eg/service?article_code=52134
13
Original Article
19
Journal
Egyptian Journal of Soil Science
https://ejss.journals.ekb.eg/
Indirect Estimation of Deep Percolation Using Soil Water Balance Equation and NASA Land Simulation Model (LIS) for More Sustainable Water Management
Details
Type
Article
Created At
22 Jan 2023