Duration 2 Years |
Level Post Graduation |
Type Degree |
Eligibility Graduation |
M.Tech. Ocean Engineering or Master of Technology in Ocean Engineering is a postgraduate Oceanography course. The course prepares individuals to apply mathematical and scientific principles to the design, development and operational evaluation of systems to monitor, control, manipulate and operate within coastal or ocean environments, such as underwater platforms, flood control systems, dikes, hydroelectric power systems, tide and current control and warning systems, and communications equipment, the planning and design of total systems for working and functioning in water or underwater environments, and the analysis of related engineering problems such as the action of water properties and behaviour on physical systems and people, tidal forces, current movements, and wave motion. Program reflects the research interests of the faculty and cover topics in coastal engineering, sediment transport, mixing processes in coastal and estuarine waters, the motion of vessels in waves, underwater acoustics and marine meteorology.
Syllabus of Ocean Engineering as prescribed by various Universities and Colleges.
Sem. I |
|
Sr. No. |
Subjects of Study |
1 |
Oceanography |
2 |
Wave Hydrodynamics |
3 |
Ocean Structures & Materials |
4 |
Statistics and Dynamics of Marine Vehicle |
5 |
Design of Offshore Structures |
6 |
Experimental Methods & Measurements |
7 |
Laboratory I |
Sem. II |
|
1 |
Laboratory II |
2 |
Foundation of Offshore structures |
3 |
Department Elective I |
4 |
Department Elective II |
5 |
Department Elective III |
6 |
Department Elective IV |
Sem. III |
|
1 |
Practical Training |
2 |
Project |
3 |
Design Project |
Sem. IV |
|
1 |
Project |
List of Electives |
|
1 |
Marine Robotics |
2 |
Marine Survey |
3 |
Geo Informatics |
4 |
Marine Instrumentation |
5 |
Sea Surveying |
6 |
Ocean Acoustics |
7 |
Shipboard Training |
8 |
Dynamics of Ocean Structures |
9 |
Port Planning and Development |
10 |
Dynamics of Floating Bodies |
11 |
Guidance & Control of Marine Vehicles |
12 |
Nonlinear Problem in Ocean Engineering |
13 |
Advanced Marine Structures |
14 |
Ocean Environmental Policy & Coastal Zone Management |
15 |
Port and Harbour Structures |
16 |
Numerical Techniques in Ocean Hydrodynamics |
17 |
FEM applied to Ocean Engineering |
18 |
Advanced Wave Dynamics |
90 |
Coastal Engineering |
20 |
Design of Coastal Structures |
21 |
Ocean Mining and Dredging |
22 |
Design of Offshore Structures |
23 |
Plated Structures and Shells |
24 |
Marine Foundation |
25 |
Marine Corrosion & Control |
26 |
Optimisation of Ocean Structures |
27 |
Concrete & Concrete Structures for Oceans |
28 |
Behaviour of Marine Clays |
29 |
Wave Simulation Measurement & Analysis |
30 |
Computer-Aided Analysis of Offshore structures & Ships |
31 |
Comp. Aid. Surface Dev. For Marine Vehicles |
32 |
Advanced Marine Vehicles |
33 |
Drilling Technology |
34 |
HSE Management in Petroleum and Offshore Engineering |
35 |
Subsea Engineering for oil and gas fields |
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