2021INTERNATIONAL JOURNAL OF CIVIL ENGINEERING AND TECHNOLOGY (IJCIET)Open access

THE EFFECT OF DIFFERENT RECHARGE RATES ON THE RECHARGE CIRCLE IN THE RECHARGE WELLS

A. Metwally, Anas Mohammed Almolla, Rani Fouad Mohammed, Mostafa Ali Abdelaal

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Abstract

In view of the importance of water in the whole world, especially in the areas that have begun to enter the water poverty space, attention must be paid to all sources of water, and on top of these sources is the water produced from the flood it is huge quantities of water that (mostly) are wasted and not directed to the best direction to preserve These quantities of water also protect it from pollutants, as well as protect lives and property from flood hazards.It has been proven that artificial recharge projects are among the most important projects through which these large quantities of floodwater can be preserved.And we found that one of the best methods that lead to results that are closest to the truth and practical reality is to make a laboratory model that simulates all the elements that affect the operations of recharge groundwater through vertical perforated wells.The model was created for this purpose specifically. All experiments were achieved in the Hydraulics Laboratory in the Faculty of Engineering of Al-Azhar University in Cairo, EgyptAfter making the model, we calibrated it by making a numerical analysis model by the (GMS) program to facilitate the work of different scenarios and then extracting the results and recommendations that benefit all specialists in the field of groundwater recharge with anchored charging wells.

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In view of the importance of water in the whole world, especially in the areas that have begun to enter the water poverty space, attention must be paid to all sources of water, and on top of these sources is the water produced from the flood it is huge quantities of water that (mostly) are wasted and not directed to the best direction to preserve These quantities of water also protect it from pollutants, as well as protect lives and property from flood hazards.It has been proven that artificial recharge projects are among the most important projects through which these large quantities of floodwater can be preserved.And we found that one of the best methods that lead to results that are closest to the truth and practical reality is to make a laboratory model that simulates all the elements that affect the operations of recharge groundwater through vertical perforated wells.The model was created for this purpose specifically. All experiments were achieved in the Hydraulics Laboratory in the Faculty of Engineering of Al-Azhar University in Cairo, EgyptAfter making the model, we calibrated it by making a numerical analysis model by the (GMS) program to facilitate the work of different scenarios and then extracting the results and recommendations that benefit all specialists in the field of groundwater recharge with anchored charging wells.

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Available abstract

In view of the importance of water in the whole world, especially in the areas that have begun to enter the water poverty space, attention must be paid to all sources of water, and on top of these sources is the water produced from the flood it is huge quantities of water that (mostly) are wasted and not directed to the best direction to preserve These quantities of water also protect it from pollutants, as well as protect lives and property from flood hazards.It has been proven that artificial recharge projects are among the most important projects through which these large quantities of floodwater can be preserved.And we found that one of the best methods that lead to results that are closest to the truth and practical reality is to make a laboratory model that simulates all the elements that affect the operations of recharge groundwater through vertical perforated wells.The model was created for this purpose specifically. All experiments were achieved in the Hydraulics Laboratory in the Faculty of Engineering of Al-Azhar University in Cairo, EgyptAfter making the model, we calibrated it by making a numerical analysis model by the (GMS) program to facilitate the work of different scenarios and then extracting the results and recommendations that benefit all specialists in the field of groundwater recharge with anchored charging wells.

Key concepts: Groundwater recharge, Hydrology (agriculture), Geology, Environmental science, Geotechnical engineering, Groundwater, Aquifer

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