As a University of Applied Learning, SIT works closely with industry in our research pursuits.
Job Responsibilities:
- Lead the design, fabrication, and integration of ultrasonic transducer systems for antifouling applications on marine hull structures. Biofouling background is advantageous.
- Conduct advanced numerical simulations using ANSYS or equivalent FEM tools to model surface acoustic wave propagation and optimize transducer performance.
- Design and execute experimental protocols, including laboratory and field testing, to evaluate antifouling effectiveness and safe biological interaction with other marine organisms.
- Analyse complex multi-domain datasets (acoustic, mechanical, biological) and generate technical reports, journal publications, and intellectual property documentation.
- Coordinate across interdisciplinary teams which include students, in the areas of marine biology, mechanical engineering, and naval architecture, to ensure project milestones and deliverables are met.
- To liaise and communicate with internal and external stakeholders to ensure project deliverables are met.
- Any other ad-hoc duties assigned by Supervisor.
Job Requirements
- PhD in Mechanical Engineering, Acoustics, Marine Engineering, or related field. Ability to demonstrate additional expertise in ultrasonic systems and wave propagation is an advantage.
- Proficiency in finite element modeling, particularly in tools like ANSYS. Understanding of piezoelectricity is an advantage.
- Experience in experimental design and prototyping, especially involving transducers, vibration measurement, or marine equipment.
- Familiarity with biofouling mechanisms or marine biology is highly desirable.
- Proven track record of independent research, including high-impact publications.