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Irrigation Engineering And Hydraulic Structures by Santosh Kumar Garg Book Details
Book Name | Irrigation Engineering And Hydraulic Structures |
Author | Santosh Kumar Garg |
Category | Civil Engineering Books, Education Books, Environmental Engineering Books |
Book Language | English |
Publisher | Khanna Publication |
Pages | 1726 |
ISBN | 81-7409-047-9 |
Country | India |
Book Size | 147 MB |
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About Irrigation Engineering And Hydraulic Structures by Santosh Kumar Garg Book
Irrigation Engineering and Hydraulic Structures is a branch of civil engineering that deals with the design, construction, and management of irrigation systems and hydraulic structures. It plays a crucial role in agricultural and civil engineering, as it focuses on efficiently providing water for agricultural purposes and managing water resources for various applications. Here are some key aspects and components of irrigation engineering and hydraulic structures:
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Irrigation Systems: This field involves the design and implementation of irrigation systems that help distribute water to agricultural fields. These systems can include surface irrigation (like canals and ditches), subsurface irrigation (using pipes or tubes), and drip irrigation (precise water delivery to individual plants). The goal is to optimize water use and improve crop yields.
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Hydraulic Structures: Hydraulic structures are engineered systems designed to manage and control the flow of water. These structures can include dams, weirs, reservoirs, spillways, and canals. They serve various purposes, such as storing water for irrigation, generating hydroelectric power, flood control, and ensuring a stable water supply.
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Water Resource Management: Irrigation engineers work on the sustainable management of water resources. They analyze factors like rainfall, groundwater availability, and river flow to plan the distribution and allocation of water resources effectively.
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Design and Construction: Engineers in this field design and construct hydraulic structures like dams and canals. This involves calculations and modeling to ensure the safety, stability, and efficiency of these structures.
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Water Quality and Treatment: Ensuring the quality of water used in irrigation is essential. Engineers may be involved in designing and implementing water treatment systems to remove contaminants and improve water quality for agricultural use.
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Environmental Impact Assessment: Irrigation engineering takes into consideration the environmental impact of irrigation projects. Engineers work to minimize adverse effects on ecosystems and habitats while optimizing water use for agriculture.
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Automation and Technology: Modern irrigation systems often incorporate automation and technology, such as sensors and control systems, to manage water distribution more efficiently. This can lead to water savings and improved crop yields.
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Research and Development: Ongoing research is crucial to developing new techniques and technologies for irrigation and hydraulic structures. This includes studying the impact of climate change on water resources and finding innovative solutions.
Irrigation engineering and hydraulic structures are vital for food security, sustainable agriculture, and water resource management, especially in regions where water availability is limited. Engineers in this field play a significant role in optimizing water usage and ensuring the reliable supply of water for agricultural and other purposes.
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