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Introductory technical guidance for civil engineers interested in open channel flow. Here is what is discussed: 1. INTRODUCTION, 2. BUBBLE DYNAMICS, 3. VERTICAL AND LONGITUDINAL FLOW STRUCTURE, 4. DESIGN PARAMETERS, 5. REFERENCES.
Introductory technical guidance for Professional Engineers interested in open channel flow of water and other fluids.
A definitive guide to open channel hydraulics―fully updated for the latest tools and methods This thoroughly revised resource offers focused coverage of some of the most common problems encountered by practicing hydraulic engineers and includes the latest research and computing advances. Based on a course taught by the author for nearly 40 years, Open Channel Hydraulics, Third Edition features clear explanations of floodplain mapping, flood routing, bridge hydraulics, culvert design, stormwater system design, stream restoration, and much more. Throughout, special emphasis is placed on the application of basic fluid mechanics principles to the formulation of open channel flow problems. Coverage includes: Basic principles Specific energy Momentum Uniform flow Gradually varied flow Hydraulic structures Governing unsteady flow equations and numerical solutions Simplified methods of flow routing Flow in alluvial channels Three-dimensional CFD modeling for open channel flows
Environmental Hydraulics is a new text for students and professionals studying advanced topics in river and estuarine systems. The book contains the full range of subjects on open channel flows, including mixing and dispersion, Saint-Venant equations method of characteristics and interactions between flowing water and its surrondings (air entrainment, sediment transport).Following the approach of Hubert Chanson's highly successful undergraduate textbook Hydraulics of Open Channel Flow, the reader is guided step-by-step from the basic principles to more advanced practical applications. Each section of the book contains many revision exercises, problems and assignments to help the reader test their learning in practical situations.·Complete text on river and estuarine systems in a single volume·Step-by-step guide to practical applications·Many worked examples and exercises
A comprehensive treatment of open channel flow, Open Channel Flow: Numerical Methods and Computer Applications starts with basic principles and gradually advances to complete problems involving systems of channels with branches, controls, and outflows/ inflows that require the simultaneous solutions of systems of nonlinear algebraic equations coupled with differential equations. The book includes downloadable resources that contain a program that solves all types of simple open channel flow problems, the source programs described in the text, the executable elements of these programs, the TK-Solver and MathCad programs, and the equivalent MATLAB® scripts and functions. The book provides applied numerical methods in an appendix and also incorporates them as an integral component of the methodology in setting up and solving the governing equations. Packed with examples, the book includes problems at the end of each chapter that give readers experience in applying the principles and often expand upon the methodologies use in the text. The author uses Fortran as the software to supply the computer instruction but covers math software packages such as MathCad, TK-Solver, MATLAB, and spreadsheets so that readers can use the instruments with which they are the most familiar. He emphasizes the basic principles of conservation of mass, energy, and momentum, helping readers achieve true mastery of this important subject, rather than just learn routine techniques. With the enhanced understanding of the fundamental principles of fluid mechanics provided by this book, readers can then apply these principles to the solution of complex real-world problems. The book supplies the knowledge tools necessary to analyze and design economical and properly performing conveyance systems. Thus not only is the book useful for graduate students, but it also provides professional engineers the expertise and knowledge to design well performing and economical channel systems.
In diesem Band geht es um Strömungen, deren Oberfläche gegenüber der Atmosphäre offenliegt - etwa in Kanälen, Flüssen, Kanalisationsrohren und manchen Abwasserleitungen. Bau- und Umweltingenieuren wird erläutert, wie sich das Wasser in diesen Situationen verhält; alle Gleichungen werden sowohl in algebraischer als auch in Differentialform gelöst. Eine wertvolle Hilfe bei der Konstruktion von Kanalsystemen! (11/00)
Introductory technical guidance for civil engineers, geotechnical engineers and other professional engineers nd construction managers interested in design and construction of tunnels and shafts in rock and soil. Here is what is discussed: 1. CONSTRUCTION BY BLASTING AND BORING, 2. DESIGN CONSIDERATIONS, 3. GEOTECHNICAL ANALYSIS, 4. INITIAL GROUND SUPPORT DESIGN, 5. CONSTRUCTION OF TUNNELS AND SHAFTS, 6. GEOTECHNICAL EXPLORATION, 7. GROUND SUPPORT, 8. TUNNELS AND SHAFTS IN ROCK.
Introductory technical guidance for civil engineers, geotechnical engineers and other professional engineers and construction managers interested in design and construction of tunnels and shafts in rock. Here is what is discussed: 1. FUNDAMENTAL APPROACH TO GROUND SUPPORT DESIGN, 2. FUNCTIONAL REQUIREMENTS OF TUNNELS AND SHAFTS, 3. MODES OF FAILURE OF TUNNELS AND SHAFTS, 4. SEISMIC EFFECTS ON TUNNELS.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in area drainage systems. Here is what is discussed: 1. GENERAL, 2. CHANNELS, 3. BRIDGES, 4. CURB-AND-GUTTER SECTIONS, 5 CULVERTS, 6. UNDERGROUND HYDRAULIC DESIGN, 7. INLETS, 8. VEHICULAR SAFETY AND HYDRAULICALLY EFFICIENT DRAINAGE PRACTICE.
Introductory technical guidance for civil engineers interested in open channel flow. Here is what is discussed: 1. INTRODUCTION, 2. BUBBLE DYNAMICS, 3. VERTICAL AND LONGITUDINAL FLOW STRUCTURE, 4. DESIGN PARAMETERS, 5. REFERENCES.