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Ocean and Naval Engineering courses

Learn Ocean and Naval Engineering online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.

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MIT OpenCourseWare

Marine Power and Propulsion

This course discusses the selection and evaluation of commercial and naval ship power and propulsion systems. It will cover the analysis of propulsors, prime mover thermodynamic cycles, propeller-engine matching, propeller selection, waterjet analysis, and reviews alternative propulsors. The course…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Fluid Dynamics

This class provides students with an introduction to principal concepts and methods of fluid mechanics. Topics covered in the course include pressure, hydrostatics, and buoyancy; open systems and control volume analysis; mass conservation and momentum conservation for moving fluids; viscous fluid f…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Numerical Fluid Mechanics

This course is an introduction to numerical methods and MATLAB®: Errors, condition numbers and roots of equations. Topics covered include Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Marine Chemistry

This course is an introduction to chemical oceanography. It describes reservoir models and residence time, major ion composition of seawater, inputs to and outputs from the ocean via rivers, the atmosphere, and the sea floor. Biogeochemical cycling within the oceanic water column and sediments, emp…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Large-scale Flow Dynamics Lab

This course is a laboratory accompaniment to 12.803, Quasi-balanced Circulations in Oceans and Atmospheres. The subject includes analysis of observations of oceanic and atmospheric quasi-balanced flows, computational models, and rotating tank experiments. Student projects illustrate the basic princ…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Dynamics and Vibration (13.013J)

Introduction to dynamics and vibration of lumped-parameter models of mechanical systems. Three-dimensional particle kinematics. Force-momentum formulation for systems of particles and for rigid bodies (direct method). Newton-Euler equations. Work-energy (variational) formulation for systems particl…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Compressible Fluid Dynamics

2.26 is a 6-unit Honors-level subject serving as the Mechanical Engineering department’s sole course in compressible fluid dynamics. The prerequisites for this course are undergraduate courses in thermodynamics, fluid dynamics, and heat transfer. The goal of this course is to lay out the fundamenta…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Introduction to Observational Physical Oceanography

Observational physical oceanography includes topics such as the physical description of the sea, the physical properties of seawater, methods and measurements, wind-driven ocean circulation, abyssal ocean circulation, boundary processes, and wave motions.

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Atmospheric and Oceanic Modeling

The numerical methods, formulation and parameterizations used in models of the circulation of the atmosphere and ocean will be described in detail. Widely used numerical methods will be the focus but we will also review emerging concepts and new methods. The numerics underlying a hierarchy of model…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Hydrodynamics (13.012)

This course covers the development of the fundamental equations of fluid mechanics and their simplifications for several areas of marine hydrodynamics and the application of these principles to the solution of engineering problems. Topics include the principles of conservation of mass, momentum and…

  • MIT
  • Self-paced
  • Free course
  • Advanced

Massachusetts Institute of Technology

MIT 2.993 The Art and Science of Boat Design, IAP 2007

Instructor: Christopher Dewart, Kurt Hasselbalch, Prof. Nicholas Patrikalakis, Reuben Smith, Antonio Dias This class is jointly sponsored by the MIT Museum, Massachusetts Bay Maritime Artisans, the Department of Mechanical Engineering's Center for Ocean Engineering, and the Department of Architectu…

Video playlist
  • YouTube
  • 5 videos, 5.5 hours
  • Self-paced
  • Free video

MIT OpenCourseWare

Numerical Marine Hydrodynamics (13.024)

This course is an introduction to numerical methods: interpolation, differentiation, integration, and systems of linear equations. It covers the solution of differential equations by numerical integration, as well as partial differential equations of inviscid hydrodynamics: finite difference method…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Wave Motion in the Ocean and the Atmosphere

This course is an introduction to basic ideas of geophysical wave motion in rotating, stratified, and rotating-stratified fluids. Subject begins with general wave concepts of phase and group velocity. It also covers the dynamics and kinematics of gravity waves with a focus on dispersion, energy flu…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Principles of Oceanographic Instrument Systems -- Sensors and Measurements (13.998)

This course introduces theoretical and practical principles of design of oceanographic sensor systems. Topics include: transducer characteristics for acoustic, current, temperature, pressure, electric, magnetic, gravity, salinity, velocity, heat flow, and optical devices; limitations on these devic…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Wave Propagation

This course discusses theoretical concepts and analysis of wave problems in science and engineering. Examples are chosen from elasticity, acoustics, geophysics, hydrodynamics, blood flow, nondestructive evaluation, and other applications.

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Special Topics in Mechanical Engineering: The Art and Science of Boat Design

This class is jointly sponsored by the MIT Museum, Massachusetts Bay Maritime Artisans, the Department of Mechanical Engineering’s Center for Ocean Engineering, and the Department of Architecture. The course teaches the fundamental steps in traditional boat design and demonstrates connections betwe…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Biomimetic Principles and Design

Biomimetics is based on the belief that nature, at least at times, is a good engineer. Biomimesis is the scientific method of learning new principles and processes based on systematic study, observation and experimentation with live animals and organisms. This Freshman Advising Seminar on the topic…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Fluid Dynamics of the Atmosphere and Ocean

This class introduces fluid dynamics to first year graduate students. The aim is to help students acquire an understanding of some of the basic concepts of fluid dynamics that will be needed as a foundation for advanced courses in atmospheric science, physical oceanography, ocean engineering, etc.…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Principles of Naval Architecture

This course presents principles of naval architecture, ship geometry, hydrostatics, calculation and drawing of curves of form, intact and damage stability, hull structure strength calculations and ship resistance. It introduces computer-aided naval ship design and analysis tools. Projects include a…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Plates and Shells

This course explores the following topics: derivation of elastic and plastic stress-strain relations for plate and shell elements; the bending and buckling of rectangular plates; nonlinear geometric effects; post-buckling and ultimate strength of cold formed sections and typical stiffened panels us…

  • MIT
  • Self-paced
  • Free course
  • Advanced