A Practical Guide to Construction of Hydropower Facilities (inbunden)
Inbunden (Hardback)
Antal sidor
CRC Press Inc
black and white 89 Illustrations
89 Illustrations, black and white
234 x 165 x 31 mm
798 g
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A Practical Guide to Construction of Hydropower Facilities (inbunden)

A Practical Guide to Construction of Hydropower Facilities

Inbunden Engelska, 2019-03-22
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This book deals with the narratives of water to watt, which includes elementary conceptual design, modern planning, scheduling and monitoring systems, and extensive pre- and post-investigations pertaining to hydropower facilities. It also includes explorations to ensure aspects of dam safety evaluation, effective contract management, specialized construction management techniques, and preferred material and equipment handling systems. Special emphasis is placed upon health, safety, environmental, and risk management concepts. The book discusses a standard QA/QC system to measure and assure quality and an environmental impact assessment to reach the set target in the stipulated timeline within the approved budget. Key Features: Offers comprehensive coverage of hydro-structures and practical coverage from an industry perspective Helps readers understand complexity involved in large-scale interdisciplinary projects Provides good insights on building procedures, precautions, and project management Includes project planning, construction management and hydropower technology, QA/QC, HSE, and statutory requirements Illustrates how to integrate good constructability/buildability into good design for the best monetary value
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Suchintya Kumar Sur is Visiting Professor at Jaipur National University and former Head of the Department of Civil Engineering at Jaipur Engineering College and Research Centre. He had also served as Vice President (Construction) at M/s Reliance Industries Ltd, Mumbai and Manger Construction at Engineers India Limited, New Delhi, and SDO in North Eastern Electric Power Corporation Ltd, Shillong. He has expertise in the construction of a major hydel project in Limestone Valley and was instrumental in completion of the world's largest grassroots oil refinery and oil refining hub in Jamnagar, India in record time which became a landmark of Indian success in the global market. He is equally adept in handling of mechanical underground and above ground piping networks with high temperature and pressure, along with erection and commissioning of dynamic, static, and rotary equipment's. He has flair in earthquake engineering and design of RCC structures.


CHAPTER 01 Introduction 1.1 Introduction to Objectives, Scope & Outcomes 1.2 Out comes 1.3 Theme & Philosophy 1.4 Concept of Hydro Power Project 1.5 Global Status of Hydro Power 1.6 Definition of Hydro Power Chapter 02 Planning, Project Cost Estimation and Future of Small Hydro Power (SHP) Large Hydro And Its Various Schemes 2.1 Global Definition & various rated capacity of SHP 2.2 Type of Facilities & its applicability 2.3 How small scale Hydro is utilised world wide: 2.4 Planning Of Small Hydro Power (SHP) 2.5 Benefits of Small Hydro Power(SHP) 2.6 Project Cost Estimation and Future of SHP 2.7 Type of Major Hydro Project Chapter 03 Concept of Forces Acting on Gravity Dam & its Stability 3.1 Terminology and Some Definitions Related to Gravity Dam 3.2 Concept of Forces Acting on Gravity Dam 3.3 Requirement of Stability 3.4 Forces acting on dam 3.5 Category of Forces to be resisted by Dam 3.6 Assumptions for Consideration of Stability 3.7 Load Combination 3.8 Reaction of Foundation 3.9 Resistance against over turning 3.10 Sliding Resistance 3.11 Factor of Safety 3.12 Discussion on Earthquake Engineering of Dam Chapter 04 Contract & Administration Management 4.0 Introduction 4.1 Component of Contract Management 4.2 Function of Contract Management 4.3 Type Of Contract 4.4 Item Rate Contract 4.5 Cost Plus Contract 4.6 Turn Key Contract 4.7 Estimation and Tendering process of Concrete Gravity Dam 4.8 Type of Estimates 4.9 Start-up, Testing, Pre- Commissioning and Commissioning 4.10. Start-up 4.11 Liquidation of Punch List. 4.12 Performance Test 106 4.13Project Closed out Report Chapter 05 Site Mobilisation and Kick-Off 5.1 Introduction 5.2 Infrastructure Development by Project Authority. 5.3 Role of Construction Manager 5.4 Planning for Mobilization and Kick-off Meeting 5.5 Site Mobilisation 5.6 Initial Site Activities 5.7 Blasting Operation in Stone Quarry Chapter 06 River Diversion 6.1 Introduction 6.2 Diversion Requirement 6.3 Method Of Diversion 6.4 Various River Diversion Chapter 07 Reinforcement Cutting and Bending Yard 7.1 Purpose 7.2 Type of Steel used in civil engineering work 7.3 Planning and setting up Bar Bending Yard 7.4 Splicing and its types 7.5 Setting up Bar Bending Yard Chapter 08 Investigation & Exploration of Dam & Reservoir Site 8.1 Fundamental 8.2 Dam site Investigation 8.3 Geological Exploration 8.4 Stages of Geological Explorations 8.5 Permeability Assessment of Foundation 8.6 Definition of Grout and Determination Grout holes Chapter 09 Construction Methodology of Dam Foundation and Technology of its Foundation Treatment 9.0 Foundation 9.1 Layout of Foundation 9.2 Identification and Removal of over burden 9.3 Geological Mapping 9.4 Foundation Treatment 9.5 Consolidation Grouting in foundation area 9.6 Discussion on procedure of Grouting, Grouting Material& Equipment 9.7 Curtain Grouting 9.8 Dental Treatment of Fault zone, Shear Zone 9.9 Case Study 9.10 FAQ on Grouting Grout pressure, multistage grouting, permeability test etc 9.11 Technical Discussion on Karst or Sink Holes 9.12 Sink Hole/Karst topography is a matter of concern for Hydel Project Chapter 10 Concrete and its application in concrete gravity dam 10.1 Group of Concrete 10.2 Classification of Concrete with type of cement used 10.3 Classification of concrete as per weight 10.4 Grades of Concrete 10.5 Some special concrete 10.6 Classification of Concrete Mix 10.7 Parameters that control Character of Concrete 10.8 Mix Design and its requirement 10.9 Example of Mix Design of Mass Concrete 10.10 Batching and Placement of Concrete Chapter 11 Design Requirement For Temperature control in Mass Concrete 11.1 Concept of Mass Concrete 11.2 Significance of Thermal Stres