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Review of Fundementals in Hydraulic Engineering Perspective: Hydraulics Principles, Governing Equations, Design Criteria, Types of Design Problems, Hydraulics and Energy-Gradient Line Profiles for Uniformly Sloping Multiple Outlets Pipelines
PressurizedDesign criteriapipelinesHydraulic engineeringwithReview of fundamentalsmultiplePressurized pipelinesoutlets (lateralsLateralsand manifoldsManifolds) are extensively used to distribute water in irrigated areasIrrigated areas under different types of irrigation systemsIrrigation systemssuch as surfaceSurface irrigation, sprinklerSprinkler irrigation, and trickle irrigationTrickle irrigation networksubmain unitsSubmain unit. Adequate analysis of hydraulic design of multiple outlets pipelineMultiple outlets pipelines is very important concern for the proper performance of these systemsSystem performance. Hydraulic designHydraulic design of a multiple outlets pipelinePipelines is one of the important factors in the ultimate success or failure of irrigation systemsIrrigation networks. A multiple outlets pipeline is a hydraulic structureHydraulic structure whose design is limited by the operating inlet pressure headPressure head profiles, and by water application uniformityWater application uniformity that is affected by the total energy loss along the pipeline, the field topography, as well as the outlet hydraulic characteristics. This chapter will review the fundamental conceptsFundamental concepts and principles upon which the hydraulicsHydraulics of multioutlets pipeline systems is based. The review is intended to be sufficiently complete that readers who have taken a good first course in elementary multioutlet pipe flow hydraulics, various design conceptsDesign conceptwith engineering applicationsEngineering application in profession, covering different types of pipe design problemsDesign problem that are the foundation of the material in this book. We will begin with an introduction to the fundamental equationsFundamental equations that are the foundation of most of the subsequent developments in the book. Because the concept of the Energy Grade Line (EGL) and the Hydraulic Grade Line (HGLHydraulic-gradient line (HGL)) is so useful, we shall look at this idea separately. The chapter will conclude the governing equationsGoverning equations for steady-state pipe flowSteady-state flow that will allow readers to better understand the later analytical derivationsAnalytical derivation for the coming chapters.
Review of Fundementals in Hydraulic Engineering Perspective: Hydraulics Principles, Governing Equations, Design Criteria, Types of Design Problems, Hydraulics and Energy-Gradient Line Profiles for Uniformly Sloping Multiple Outlets Pipelines
PressurizedDesign criteriapipelinesHydraulic engineeringwithReview of fundamentalsmultiplePressurized pipelinesoutlets (lateralsLateralsand manifoldsManifolds) are extensively used to distribute water in irrigated areasIrrigated areas under different types of irrigation systemsIrrigation systemssuch as surfaceSurface irrigation, sprinklerSprinkler irrigation, and trickle irrigationTrickle irrigation networksubmain unitsSubmain unit. Adequate analysis of hydraulic design of multiple outlets pipelineMultiple outlets pipelines is very important concern for the proper performance of these systemsSystem performance. Hydraulic designHydraulic design of a multiple outlets pipelinePipelines is one of the important factors in the ultimate success or failure of irrigation systemsIrrigation networks. A multiple outlets pipeline is a hydraulic structureHydraulic structure whose design is limited by the operating inlet pressure headPressure head profiles, and by water application uniformityWater application uniformity that is affected by the total energy loss along the pipeline, the field topography, as well as the outlet hydraulic characteristics. This chapter will review the fundamental conceptsFundamental concepts and principles upon which the hydraulicsHydraulics of multioutlets pipeline systems is based. The review is intended to be sufficiently complete that readers who have taken a good first course in elementary multioutlet pipe flow hydraulics, various design conceptsDesign conceptwith engineering applicationsEngineering application in profession, covering different types of pipe design problemsDesign problem that are the foundation of the material in this book. We will begin with an introduction to the fundamental equationsFundamental equations that are the foundation of most of the subsequent developments in the book. Because the concept of the Energy Grade Line (EGL) and the Hydraulic Grade Line (HGLHydraulic-gradient line (HGL)) is so useful, we shall look at this idea separately. The chapter will conclude the governing equationsGoverning equations for steady-state pipe flowSteady-state flow that will allow readers to better understand the later analytical derivationsAnalytical derivation for the coming chapters.
Review of Fundementals in Hydraulic Engineering Perspective: Hydraulics Principles, Governing Equations, Design Criteria, Types of Design Problems, Hydraulics and Energy-Gradient Line Profiles for Uniformly Sloping Multiple Outlets Pipelines
Synthesis Lectures on eng., sci., & technol.
Yıldırım, Gürol (author)
2023-06-26
14 pages
Article/Chapter (Book)
Electronic Resource
English
Steady-state analysis , Turbulent flow , Friction coefficient , Reynolds number , Flow regime , Design criteria , Uniformity , System performance , Evaluation , Hydraulic design , Multioutlets , Pipe flow , Pipelines , Laterals , Manifolds , Gated pipes , Subunit , Irrigation network , Low-volume , Low-pressurized , Pressure profiles , Hydraulic-grade line (HGL) , Energy-grade line (EGL) Engineering , Geoengineering, Foundations, Hydraulics , Environment, general , Fossil Fuels (incl. Carbon Capture) , Engineering Fluid Dynamics
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