Marine Engineering is an engineering degree with saltwater in it. The first two years are statics, fluid mechanics, materials and control — the same foundations any mechanical engineer needs — taught with marine examples throughout. The last two apply them to vehicles and structures that have to work in an environment that offers no second chances.

What you study

Statics and marine structures, then fluid mechanics, then naval architecture. From the third year the program splits toward two ends: underwater robotics on one side, coastal engineering design on the other. Most students take both and specialize late.

You will design, build and test an underwater vehicle. The Marine Robotics and Test Basin opened in 2026 for exactly this reason — the department spent four years arguing that it was teaching vehicle design to students who had never watched one fail somewhere recoverable. A failure in the basin costs an afternoon. The same failure offshore costs a day of ship time and leaves no evidence.

Where it leads

Offshore and subsea engineering, vehicle and instrument manufacturers, coastal protection and consulting practice, naval architecture, and graduate study. The MS in Ocean Engineering here takes a number of graduates each year.

Students often ask whether this degree limits them to marine work. It does not. The control, structures and systems training is standard engineering; the marine context is what makes it distinctive on an application.

What to expect

A heavy load in the first two years, and a lot of time in a building with a crane in it. The student competition team is optional and takes over the lives of the people who join it.

Curriculum

MENG 120 Statics and Marine Structures

Forces, moments and equilibrium, applied from the first week to structures that sit in moving water.

1
OCEA 110 Introduction to Oceanography

The ocean as a physical, chemical, geological and biological system. Taken by students across every program here.

1
MENG 230 Fluid Mechanics

Fluid statics and dynamics, boundary layers, drag and lift — the physics every underwater vehicle and coastal structure obeys.

1.5
MENG 310 Naval Architecture

Hull form, stability, resistance and seakeeping, for surface vessels and submerged vehicles alike.

1
MENG 340 Underwater Robotics

Designing, building and testing an underwater vehicle. Weekly sessions in the test basin, and most teams break something.

1.5
MENG 420 Coastal Engineering Design

Designing coastal protection for a shoreline that will not stay where it is, including the consequences that land in the next jurisdiction.

1.5

Common questions

Yes, for all students entering directly from high school. Transfer students are housed as space allows, and the waitlist usually clears by mid-July.

Housing and residence life

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Credential awarded
BS
Degree level
undergraduate
Program length
4 years
Start terms
fall
Undergraduate portrait, dormitory common room background — Person `person_portrait`.

Dr. Priya Iyer

Professor of Ocean Engineering