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Fluvial Hydrodynamics: Solutions Manual (GeoPlanet Earth and Planetary Sciences), 1st Edition, 2024 — A comprehensive solutions manual accompanying the Fluvial Hydrodynamics textbook, providing step-by-step answers to all end-of-chapter problems. This man

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Fluvial Hydrodynamics: Solutions Manual, 1st Edition (2024) is a detailed companion guide designed to support students, instructors, and professionals studying or teaching fluvial hydraulics and river engineering. This solutions manual provides step-by-step answers to all end-of-chapter problems presented in the corresponding Fluvial Hydrodynamics textbook, making it an essential resource for mastering complex hydrodynamic concepts. The manual covers a wide range of topics critical to understanding river systems, including flow mechanics, turbulence, sediment transport, channel morphology, river modeling, and hydraulic design. Each solution is carefully worked out to demonstrate the correct methodology, application of equations, and interpretation of results. It helps students verify homework answers, reinforce understanding of theoretical principles, and develop practical problem-solving skills for real-world applications. Designed for both academic and professional use, the solutions manual aids instructors in preparing assignments, grading, and classroom demonstrations. It also supports self-study for students preparing for exams or developing a strong foundation in fluvial hydrodynamics, civil engineering, environmental engineering, and geosciences. Key areas addressed include hydraulic modeling, sediment dynamics, river erosion and deposition, channel stability, flood risk analysis, and ecohydraulics, providing learners with a holistic understanding of river processes. By working through the problems and reviewing the detailed solutions, users gain confidence in applying mathematical models, analyzing river behavior, and solving engineering challenges related to water resources and environmental management. The manual is particularly useful for civil and environmental engineering students, hydrology researchers, and practicing engineers who require a reliable guide to validate calculations, analyze river flow phenomena, and support the design of hydraulic structures and river management projects. In summary, the Fluvial Hydrodynamics: Solutions Manual, 1st Edition (2024) is an indispensable resource that bridges theory and practice in river hydraulics, sediment transport, and fluvial engineering. Its detailed, step-by-step solutions provide clarity, enhance problem-solving skills, and ensure mastery of key concepts, making it essential for coursework, exam preparation, and professional practice in hydrodynamics and geomorphology.

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ALL 11 CHAPTERS COVERED




SOLUTIONS MANUAL

,



Contents




1 Introduction ...............................................................................................1
References ................................................................................................. 25
2 Hydrodynamic Principles ......................................................................... 29
References ................................................................................................. 58
3 Turbulence in Open Channel Flows.......................................................... 59
References ................................................................................................. 85
4 Sediment Threshold.................................................................................. 87
References ............................................................................................... 116
5 Bedload Transport .......................................................................................... 119
References ............................................................................................... 152
6 Suspended-Load Transport ........................................................................... 155
References ............................................................................................... 183
7 Total-Load Transport ..................................................................................... 185
References ............................................................................................... 211
8 Bedforms ................................................................................................ 213
References ............................................................................................... 228
9 Fluvial Processes: Meandering and Braiding ......................................... 231
References ............................................................................................... 244
10 Scour ...................................................................................................... 245
References ............................................................................................... 274
11 Dimensional Analysis and Similitude .................................................... 277
References ............................................................................................... 286

Author Index.................................................................................................. 287
Subject Index ................................................................................................. 291


xv

,



About the Authors




Subhasish Dey is a hydraulician and an educator. He is internationally known for
his research and is acclaimed for his contributions to developing theories and solu-
tion methodologies for various problems in hydrodynamics and sediment transport.
He currently holds the position of distinguished professor of Indian Institute of
Technology Jodhpur.
Dey’s areas of research interest include applied hydrodynamics, turbulence, and
sediment transport, in which he has about 40 years of experience. He was conferred
with the Hans Albert Einstein Award from the American Society of Civil Engineers
in 2022.

Sk Zeeshan Ali is a researcher and an academician. Currently, he is an assistant
professor in the department of civil engineering at the Indian Institute of Technology
Hyderabad, where he teaches fluid mechanics, hydraulic engineering, open-channel
flow, and sediment transport.
Ali contributes to the field of classical and applied hydrodynamics. He is one
of the leading collaborators of the first author of this book. His areas of research
interest include boundary layer flows, turbulent flows, scaling laws of turbulence,
fluvial hydraulics, sediment transport, and morphodynamic instabilities.




xvii

,



Chapter 1
Introduction




Problem 1.1 The longest, intermediate, and shortest lengths of an ellipsoidal sedi-
ment particle are 2, 1.5, and 0.8 mm, respectively. Determine the nominal diameter
dn, area diameter da, sieve diameter d, phi ( ) unit, sphericity Sc, Corey shape factor
Sp, shape parameter Ssp, volume coefficient k v, and surface coefficient k c. Take the
surface area of the ellipsoidal particle with a1, a2, and a3 being the longest, interme-
diate, and shortest lengths as S = π{[(a1a2)q + (a2a3)q + (a1a3)q]/3}1/q with q =
1.6.

Solution
The volume V of an ellipsoidal sediment particle is
π
V=
a1a2a3 (S1.1)
6
where a1, a2, and a3 are the longest, intermediate, and shortest lengths. With a1 =
2 mm, a2 = 1.5 mm, and a3 = 0.8 mm,
π
V= × 2 × 1.5 × 0.8 = 1.26 mm3.
6
The nominal diameter dn is
6V
dn = 1/3 ⇐ Eq. (1.6)
π 1/3

⇒ dn = 6× = 1.34 mm.
1.26
π


Note Figure, table, and equation numbers devoid of the letter ‘S’ refer to those in the companion
book Dey (2024).



© The Author(s), under exclusive license to Springer Nature Switzerland AG 2024 1
S. Dey and S. Z. Ali, Fluvial Hydrodynamics - Solutions Manual, GeoPlanet: Earth and
Planetary Sciences, https://doi.org/10.1007/978-3-031-25737-7_1

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