Our Team

Liv Marte Olsen

Mechanical Engineer

Group Lead

Adrian Chan Bjørnson Ruud

Computer Engineer

Product Owner

Marte Marheim

Computer Engineer

Document Lead

Tormod Kleiv

Mechanical Engineer

Scrum Master

Sprints

Sprint 1

  • Organised the task given by TechnipFMC.
  • Assigned all group members roles based of their prior knowledge and experience.
  • Had the entire group sign under group contracts.
  • Created templates for meetings and documentation of weekly progress.
  • Presented the first presentation.

Sprint 2

  • Finished all administrative prework.
  • Updated templates to reflect changes.
  • Updated requirements.
  • Finished risk review.
  • Updated stakeholders.

Sprint 3

  • Added 2 new tests.
  • Underwent math lecture by an external supervisor to ensure our understanding of the field of interest.
  • Completed preperations for presentation 2.
  • Set up basic architecture structure for the application.

Sprint 4

  • Presented the second presentation.
  • Set up a git repository for the project.
  • Continuation of mathematics.
  • Starting on new revision of GUI.

Sprint 5

  • Prepared for and completed exams.
  • New iteration for requirements, test and user stories.
  • Research of integration between python and mathematics.
  • Went through with USN Expo planning and preparations.

Sprint 6

  • Started on integration of mathematics in python.
  • Further work on RAO and mathematical calculations.
  • Implemented and tested new GUI functionality.
  • Implemented and tested CoG functionality.
  • Implemented and tested coordinate system functionality.

Sprint 7

  • Converted center of gravity calculations to python.
  • Expo preperations completed.
  • Fixed GUI errors.
  • Improved user experience.
  • Completed mechanical calculations relating to center of gravity and rotationmatrices.

Sprint 8

  • Completed tests with external advisors.
  • Programmed capacity calculations.
  • Updated database.
  • Implemented bending moment calculations.
  • Implemented visualizing of bending moment.