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Comparative study of backfill retaining system for on shore rcc pile berth with respect to various site conditions (Softcopy is also available)

By: Contributor(s): Material type: TextTextPublication details: 2018Description: 81p.,31sheetsDDC classification:
  • SD TH-0232 DHA
Contents:
CONTENTS LIST OF FIGURES 5 LIST OF CHARTS 6 ABBREVIATIONS 9 CHAPTER 1 12 Introduction and Literature Review 12 General. 12 Need for study. 12 Objective. 13 Scope of work. 13 Literature review 14 CHAPTER 2 15 Problem formulation 15 General 15 Methodology 15 Data collection 16 Structural layout 17 Type 1 System 17 Type 2 System 18 Type 3 System 19 Loads and load combinations 21 Dead Load 21 Live Load 21 Berthing Force 21 Mooring Force 23 Current Force 24 Wave Force 24 Inertia Force 24 Drag Force 25 Wave Force for High Tide Level (HTL) 25 Wave Force for Low Tide Level (LTL) 26 Hydrodynamic Force 27 Wind Force 28 Sesmic Force calculation 29 Analysis and Design of Diaphragm Wall 30 Basic Load Combinations 34 CHAPTER 3 36 Results and Observations 36 Results 36 Observations 72 CHAPTER 4 80 Conclusions and future scope of work 80 Conclusion 80 Future Scope 80 References 81
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Item type Current library Collection Call number Status Date due Barcode Item holds
Thesis CEPT Library Faculty of Technology SD TH-0232 DHA Not for loan 019905
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CONTENTS
LIST OF FIGURES 5
LIST OF CHARTS 6
ABBREVIATIONS 9
CHAPTER 1 12
Introduction and Literature Review 12
General. 12
Need for study. 12
Objective. 13
Scope of work. 13
Literature review 14
CHAPTER 2 15
Problem formulation 15
General 15
Methodology 15
Data collection 16
Structural layout 17
Type 1 System 17
Type 2 System 18
Type 3 System 19
Loads and load combinations 21
Dead Load 21
Live Load 21
Berthing Force 21
Mooring Force 23
Current Force 24
Wave Force 24
Inertia Force 24
Drag Force 25
Wave Force for High Tide Level (HTL) 25
Wave Force for Low Tide Level (LTL) 26
Hydrodynamic Force 27
Wind Force 28
Sesmic Force calculation 29
Analysis and Design of Diaphragm Wall 30
Basic Load Combinations 34
CHAPTER 3 36
Results and Observations 36
Results 36
Observations 72
CHAPTER 4 80
Conclusions and future scope of work 80
Conclusion 80
Future Scope 80
References 81

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