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River Hydraulics: Hydraulics, Water Resources and Coastal Engineering Vol. 2

ISBN-13: 9783030817701 / Angielski / Miękka / 2022 / 471 str.

Ramakar Jha; V. P. Singh; Vivekanand Singh
River Hydraulics: Hydraulics, Water Resources and Coastal Engineering Vol. 2 Ramakar Jha V. P. Singh Vivekanand Singh 9783030817701 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

River Hydraulics: Hydraulics, Water Resources and Coastal Engineering Vol. 2

ISBN-13: 9783030817701 / Angielski / Miękka / 2022 / 471 str.

Ramakar Jha; V. P. Singh; Vivekanand Singh
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This book presents key principles of the hydraulics of river basins, with a unique focus on the interplay between stream flows and sediment transport. Addressing a number of basic topics related to the hydraulics of river systems, above all it emphasizes applicative aspects in order to provide the reader with a solid grasp of river engineering. The understanding of the river hydraulics is essential for the assessment of optimum locations for the conservation of water resources and its structures.This book will be interesting to readers and researchers working in the specialized area of river hydraulics of Ganga basin, Narmada, Tapi, Godavari, and other basins of India. It consists of review on hydraulics of meandering river; hydraulic design of reservoir in permeable pavement; optimization of hydraulic design; hydraulic investigations to optimize the design of spillway and design of energy dissipater; and analysis of performance of orifice spillway using computational fluid dynaics

This book presents key principles of the hydraulics of river basins, with a unique focus on the interplay between stream flows and sediment transport. Addressing a number of basic topics related to the hydraulics of river systems, above all it emphasizes applicative aspects in order to provide the reader with a solid grasp of river engineering. The understanding of the river hydraulics is essential for the assessment of optimum locations for the conservation of water resources and its structures. This book will be interesting to readers and researchers working in the specialized area of river hydraulics of Ganga basin, Narmada, Tapi, Godavari, and other basins of India. It consists of review on hydraulics of meandering river; hydraulic design of reservoir in permeable pavement; optimization of hydraulic design; hydraulic investigations to optimize the design of spillway and design of energy dissipater; and analysis of performance of orifice spillway using computational fluid dynaics

Kategorie:
Nauka, Archeologia
Kategorie BISAC:
Science > Earth Sciences - Hydrology
Nature > Natural Disasters
Science > Environmental Science (see also Chemistry - Environmental)
Wydawca:
Springer
Seria wydawnicza:
Water Science and Technology Library
Język:
Angielski
ISBN-13:
9783030817701
Rok wydania:
2022
Dostępne języki:
Numer serii:
000176378
Ilość stron:
471
Waga:
0.67 kg
Wymiary:
23.39 x 15.6 x 2.46
Oprawa:
Miękka
Dodatkowe informacje:
Wydanie ilustrowane

Preface
Introduction from the Editors
Acknowledgements

1                     Effect of bed permeability on flow turbulence in gravel-bed stream 

Sai Rupesh and Dr.Ratul Das

2                     Study on Erosion and Undercut of Cohesive River Bank – An Experimental Approach

Vikas Kumar Das, Susanta Chaudhuri and Koustuv Debnath

3                     Hydraulic design of reservoir in permeable pavement for mitigating urban storm water           

Sanjeev Kumar Suman and Rajnish

4                     Analytical expression for measurement of discharge using conical obstruction in a small rectangular channel       

Ankur Kapoor, Aniruddha Ghare and Avinash Vasudeo

5                     Efficient numerical algorithm for flow field around vertically submerged tandem and aligned circular cylinders     

Abhijit Rout, Soni Parth Kaushikbhai and Arindam Sarkar

6                     Experimental and Numerical Analysis of Boundary Shear Stress in Non-Prismatic Compound Channel, Laxmikant Das, Kishanjit Kumar Khatua and Bhabani Shankar Das

7                     Turbulence flow statistics downstream of grids with various mesh size            

Pankaj Raushan, Santosh Singh and Koustuv Debnath

8                     Surge analysis of Long piping              

S Ghule, P M Abdul Rahiman and K U Farande

9                     Review on hydraulics of meandering river    

Jyotirmoy Barman, Bimlesh Kumar and Jyotismita Taye

10                 Prediction of discharge coefficient for side rectangular weir using group method of data handling (gmdh)       

Ali Shariq, Ajmal Hussain and Mujib Ahmad Ansari

11                 Enhancement of energy disipation using combination of solid roller bucket and type ii stilling basin for ogee stepped spillway          

Prakash Nangare and Alka Kote

12                 Estimation of coefficient of discharge for side compound weir using gmdh technique

Mujib Ahmad Ansari, Ajmal Hussain and Faisal Ahmed

13                 Flow distributions in compound channel with diverging floodplains  

Bhabani Shankar Das, Kamalini Devi, Jnana Ranjan Khuntia and Kishanjit Kumar Khatua

14                 Boundary shear stress distributions in compound channels having narrowing and enlarging floodplains       

Kamalini Devi, Bhabani Shankar Das, Jnana Ranjan Khuntia and Dr. Kishanjit Kumar Khatua

15                 Turbulence characteristics in a vegetated open channel under unsteady flow conditions        

Jnana Ranjan Khuntia, Kamalini Devi, Bhabani Shankar Das and Dr. Kishanjit Kumar Khatua

16                 Study of scour near pier of gandhi setu in ganga river              

Binit Kumar and Vivekanand Singh

17                 Optimization of hydraulic design of URI-II Dam spillway, Jammu and Kashmir

V S Ramarao, M R Bhajantri and V V Bhosekar

18                 Modification of spillway SKI jump bucket subjected to higer tail water levels

V S Ramarao, M R Bhajantri, V V Bhosekar and K T More

19                 Prediction of submerged vegetated flow in a channel using gmdh-type neural network approach, Nekita Boraah and Bimlesh Kumar

20                 Turbulence flow statistics over a train of k-type roughness   

Santosh Kumar Singh, Pankaj Kumar Raushan and Koustuv Debnath

Conclusion 



Ramakar Jha is a chair professor at the Department of Civil Engineering and has 30 years of experience in the field of Hydrology and water resources engineering. Dr Jha is presently working as Chair Professor in the Department of Civil Engineering, National Institute of Technology (NIT) Patna-INDIA, which is a Premier Institute in India under the Ministry of Human Resource Development, Government of India. Dr. Jha has served at various levels from Scientist-B to Scientist-E1 at National Institute of Hydrology (NIH), Roorkee, India and as Professor in the Department of Civil Engineering, NIT Rourkela. He has worked and working as Country Co-ordinator of UNESCO- GWADI and Principal Investigator for many International (EU-FP7, DAAD, ADB, AUS-Aid) and National research and consultancy projects (ISRO, DST, MoWR, MHRD). Moreover, he served as Chair for many administrative positions and received a coupel of international and national awards for research papers. Presently, he is working as Dr Rajendra Prasad Chair for Water resources under the Ministry of Water Resources, Government of India in the Department of Civil Engineering, NIT Patna, Bihar.

V. P. Singh A Texas A&M professor of Indian origin is receiving a prestigious award for his world-renowned work on water. Vijay P. Singh is receiving the 2013 Lifetime Achievement Award from the American Society of Civil Engineers-Environmental and Water Resources Institute, otherwise known as the ASCE-EWRI. The award is in recognition of Singh’s work in the field of hydrology, which is the study of water in all aspects, such as quality, distribution, preservation, transportation, etc. Some of the work he has done has even created an entire new branch of hydrology – called entropic hydrology – that is connected to the study of entropy, which means essentially the study of order and disorder as it relates to the physical universe. His work is considered fundamental for flood planning and water modeling around the world. Since earning his doctorate degree, Singh has held teaching positions in some of the most well-known universities in the US. He was an Associate Research Professor of Civil Engineering at George Washington University from 1977-78, an Associate Professor of Civil Engineering at Mississippi University from 1978-81, and an adjunct professor as well as the coordinator of the Environmental and Water Resources Systems Engineering Program at Louisiana State University from 1999-2006 and 2001-2006, respectively. Singh joined Texas A&M University in 2006, where he currently wears a number of different hats. He is a professor of biological and agricultural engineering, a professor of civil and environment engineering, and a Caroline and William N. Lehrer Distinguished Chair in Water Engineering (Hydrology). He has authored or edited around 10 published works in the fields of engineering and hydrology.

Vivekanand Singh is a professor at the Department of Civil Engineering and has 28 years of experience in the field of River Hydraulics, groundwater and water resources engineering. Dr. Singh has published research papers in International Journals including ASCE Journal. He has done National projects and Consultancy during his work at NIT Patna. Prior to this, Dr. Singh was Scientist at National Institute of Hydrology Roorkee. He organized several summer courses, conferences and workshops. He has been working as Editor in some Indian Journals.

L. B. Roy is a professor at the Department of Civil Engineering and has 33 years of experience in the field of water resources engineering as well as geotechnical engineering. Dr. Roy has been serving the Water Resources Engineering Department for long time and carried out various field based research activities for different river systems of the region with special emphasis to floods. Dr. Roy has been involved in many research projects and published several research papers in peer reviewed journals. He has been working for Intellectual Property Rights (IPR) and received awards for various activities.

Roshni T. is an assistant professor at the Department of Civil Engineering and has 9 years of experience in the field of water resources engineering. Dr. Roshni earned her PhD in Civil Engineering at the University of Pisa, Italy. After obtaining Ph.D, Dr Roshni had joined National Institute of Technology Calicut, India as an Adhoc faculty and later joined National Institute of Technology Patna as an Assistant Professor. She has supervised 2 PhD, more than 30 Master theses. Furthermore, she has been awarded DST-SERB project for the topic Two Phase flows and Water Quality in Rivers, funded by Department of Science and Technology, MHRD India. Results obtained from her research have been published nearly 30 papers in international journals and more than 15 papers in International conferences and 3 book chapters. Dr. Roshni is active in a variety of professional bodies and she has organized numerous workshops and conferences in her academic career.

 

 

This book presents key principles of the hydraulics of river basins, with a unique focus on the interplay between stream flows and sediment transport. Addressing a number of basic topics related to the hydraulics of river systems, above all it emphasizes applicative aspects in order to provide the reader with a solid grasp of river engineering. The understanding of the river hydraulics is essential for the assessment of optimum locations for the conservation of water resources and its structures.

This book will be interesting to readers and researchers working in the specialized area of river hydraulics of Ganga basin, Narmada, Tapi, Godavari, and other basins of India. It consists of review on hydraulics of meandering river; hydraulic design of reservoir in permeable pavement; optimization of hydraulic design; hydraulic investigations to optimize the design of spillway and design of energy dissipater; and analysis of performance of orifice spillway using computational fluid dynamics



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