MSc Thesis: CFD Modelling of Wave Loads

Haskoning

Amersfoort

On-site

EUR 5,000 - 8,400

Full time

3 days ago
Be an early applicant
Application generator

A complete application in a minute — tailored resume and cover letter, ready to send.

Get past ATS filters

Job summary

Haskoning invites a motivated MSc student to undertake a graduation internship focusing on CFD modelling of wave loads using CoastalFOAM. The project compares 2D and 3D simulations against small-scale physical tests to evaluate differences in wave behavior and structural loads.

You will work with MATLAB or Python to analyze measurements, develop comparative visuals, and report findings for the Maritime & Renewables team in the Netherlands.

Qualifications

  • Currently enrolled in a technical MSc programme in Hydraulic Engineering, Coastal Engineering or Physics.
  • Experience with MATLAB or Python to analyse laboratory measurements and compare 2D and 3D modelling results.

Responsibilities

  • Investigate how two- and three-dimensional CoastalFOAM simulations represent wave loads on hydraulic structures.
  • Compare numerical simulation results with laboratory measurements.
  • Create a comparative video that presents CoastalFOAM simulations alongside physical model tests.
  • Assess the strengths and limitations of 2D vs 3D modelling for wave loads.

Job description

Haskoning continues to strengthen its expertise in computational fluid dynamics (CFD). It does this through the use and development of its advanced numerical wave flume, CoastalFOAM. We always improve our methods. For example, we work on the Top Consortia for Knowledge and Innovation (TKI) OFCOARSE project. We collaborate with TU Delft, Deltares, and Van Oord in this project. The aim of this TKI project is to develop guidance for the use of OpenFOAM-based models. It also aims to validate two-dimensional (2D) and three-dimensional (3D) OpenFOAM simulations for wave overtopping and wave impact applications.

These observations highlight the need to quantify the added value of 3D CoastalFOAM simulations compared with 2D models. In particular, further assessment is required to determine how the additional spatial dimension influences impact pressures and structural loads. For wave loading, it is expected that including three-dimensional effects may lead to reduced loads due to energy spreading and additional dissipation; however, this still needs to be systematically evaluated and validated against the physical model tests.

The Maritime & Renewables department is seeking a motivated MSc-thesis student for MSc Thesis: CFD Modelling of Wave Loads with a strong interest in numerical modelling. The objective of this research assignment is to conduct a comparative analysis of small-scale physical model tests and CFD simulations using CoastalFOAM. The focus will be on evaluating the differences between 2D and 3D simulation results.

  • Delft
  • Amersfoort
  • 450 - 750
  • 32 - 40 hours
  • MSc thesis internship

Even though every thesis is different, there are multiple reference theses available:

  • An efficient numerical way of working to model wave overtopping of rubble mound breakwaters, Marco Moretto 2020, Delft University of Technology
  • Hydrodynamic modelling of wave overtopping over a block-covered dike, Luc Barendse 2021, University of Twente
  • Numerical estimation of wave loads on crest walls on top of rubble mound breakwaters using OpenFOAM, Marisol Irias Mata, 2021 Delft University of Technology
  • Numerical estimation of upward pressure differences over a placed block revetment under wave loading on a dike, Martijn van Heest, 2023 Delft University of Technology
  • Evaluating the Added Value of 3D CFD Modelling for Capturing Wave Overtopping in OpenFOAM, Eveliina Moonen, 2026, Delft University of Technology
What you will do as a graduation intern

During this MSc thesis internship, you will investigate how two-dimensional (2D) and three-dimensional (3D) CoastalFOAM simulations represent wave loads on hydraulic structures. Your research will help assess the added value of 3D modelling for understanding wave behaviour and the resulting structural loads.

You will compare numerical simulation results with measurements from small-scale laboratory experiments. The experimental data will be available for your study, allowing you to examine how well the models reproduce observed wave behaviour, impact pressures and structural loads.

Your work will focus on:

  • Analysing wave patterns and identifying differences between the physical tests and the 2D and 3D simulations.
  • Investigating three-dimensional energy dissipation and its influence on wave behaviour and loads.
  • Evaluating wave impacts on hydraulic structures and comparing the simulation results with laboratory measurements.
  • Creating a comparative video that presents the CoastalFOAM simulations alongside the physical model tests.

Based on your findings, you will assess the strengths and limitations of both modelling approaches and draw conclusions about the value of including three-dimensional effects in wave load simulations.

Where you will work

At Haskoning, you will join an independent, employee-owned international consultancy that combines engineering, design, and consultancy services with software and technology.

You will become part of the Advisory Group Maritime & Renewables the Netherlands. This team consists of around 180 colleagues and is based in the Netherlands across three offices (Delft, Amersfoort and Nijmegen). As a team we excel in a wide variety of services and skills in the fields of Climate Resilience, Maritime and Renewable developments. We provide our clients, both private and (semi)governmental, with a range of services throughout the various phases of a project: from inception, through master planning, feasibility, design all the way to construction supervision. We have a strong foothold in the Netherlands but we operate worldwide.

What you bring

You enjoy numerical modelling and approach technical challenges with curiosity and persistence, even when things do not work the first time. You like working alongside colleagues in the office and joining social activities, becoming part of the team beyond your thesis work.

  • You are currently enrolled in a technical MSc programme, for example in Hydraulic Engineering, Coastal Engineering or Physics, providing a relevant foundation for researching wave behaviour and loads on hydraulic structures.
  • You have experience with MATLAB or Python to analyse laboratory measurements, process simulation results and compare the outcomes of 2D and 3D modelling.
Get your free, confidential resume review.
or drag and drop your file here.
Similar jobs

Similar jobs worth comparing

MSc Thesis: CFD Modelling of Wave Loads
MSc Thesis: CFD Modelling of Wave Loads

Haskoning • Delft

On-site
EUR 6,700 - 10,000
Graduation Thesis Infra Marine
Graduation Thesis Infra Marine

Van Oord • Rotterdam

On-site
EUR 5,600 - 8,400
Graduation internship allowance
Intensive supervision
MSc Thesis: 3D CFD Wave Loads vs 2D CoastalFOAM
MSc Thesis: 3D CFD Wave Loads vs 2D CoastalFOAM

Haskoning • Amersfoort

On-site
EUR 5,000 - 8,400
MSc Thesis: 3D CFD Wave Loads in CoastalFOAM
MSc Thesis: 3D CFD Wave Loads in CoastalFOAM

Haskoning • Delft

On-site
EUR 6,700 - 10,000
2D vs 3D CoastalFOAM Wave Load Modelling
2D vs 3D CoastalFOAM Wave Load Modelling

Haskoning • Delft

On-site
EUR 6,700 - 10,000
MSc thesis assignment: Automated Calibration of a Shoreline Model Using Satellite-Derived Shoreline Observations
MSc thesis assignment: Automated Calibration of a Shoreline Model Using Satellite-Derived Shoreline Observations

Haskoning • Delft

On-site
EUR 8,100 - 9,900
Internship allowance €750/month
Mentor guidance from a dedicated tutor
Opportunity to contribute to impactful
+1
3D Coastal CFD Thesis: Wave Loads & Overtopping
3D Coastal CFD Thesis: Wave Loads & Overtopping

Van Oord • Rotterdam

On-site
EUR 5,600 - 8,400
Graduation internship allowance
Intensive supervision
Afstudeerstage - Infra Marine .
Afstudeerstage - Infra Marine .

Van Oord • Rotterdam

On-site
EUR 6,700 - 8,900
Afstudeerstagevergoeding
Intensieve begeleiding van ervaren eng
Young Van Oord
+2
Graduation Internship: Creep Behavior and Remaining Capacity of Timber Pile Foundations
Graduation Internship: Creep Behavior and Remaining Capacity of Timber Pile Foundations

Haskoning • Delft

Hybrid
EUR 7,800 - 8,900
Hybrid working
Mentor guidance
€750 internship allowance
Graduation Internship: Creep Behavior and Remaining Capacity of Timber Pile Foundations
Graduation Internship: Creep Behavior and Remaining Capacity of Timber Pile Foundations

Haskoning • Amersfoort

Hybrid
EUR 7,600 - 9,100
Internship allowance €750/month
Hybrid working
Mentor guidance