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Impact of Improved Operation and Maintenance on Cohesive Sediment Transport in Gezira Scheme, Sudan

List Price: $76.99
SKU:
9781138028807
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  • Product Details

    Author:
    Ishraga S. Osman
    Format:
    Paperback
    Pages:
    200
    Publisher:
    CRC Press (October 29, 2015)
    Language:
    English
    Audience:
    College/higher education
    ISBN-13:
    9781138028807
    Weight:
    14.5oz
    Dimensions:
    6.6875" x 9.4375"
    File:
    TAYLORFRANCIS-TayFran_260130054444459-20260130.xml
    Folder:
    TAYLORFRANCIS
    List Price:
    $76.99
    Country of Origin:
    United States
    Series:
    IHE Delft PhD Thesis Series
    Case Pack:
    55
    As low as:
    $73.14
    Publisher Identifier:
    P-CRC
    Discount Code:
    H
    Pub Discount:
    30
    Imprint:
    CRC Press
  • Overview

    Irrigated agriculture remains to be the main option to boost the economy in Sudan in general. It can rise the living standard of the majority of the population; particularly those who are attached to farming and livestock. With the expected increase in population in the next decades, water management of large irrigation systems will become a key issue to increase productivity and assure future food security.
    Sediment transport in irrigation canals makes water management very complicated. This study focuses on water management in Gezira Scheme, Sudan. This scheme is irrigated from the Blue Nile River, which is characterized by a high sediment concentration. The aim of the study was to reduce the impact of fine sediment deposition in irrigation canals by improving the operation and maintenance procedures. A numerical model has been developed to simulate the cohesive sediment transport in irrigation canals. This model is a useful tool for the operators and decision makers to assess different options of operation in terms of sediment transport. This study found that sediment deposition in the canals can be minimized if the operation based on crop water requirement is adjusted at a certain period during the flood season.