We're looking for a Software Engineer focused on designing and building scalable technical solutions. This mid level role requires 3+ years of relevant experience.
About the role
Model Development: Advance thermodynamic, transport, and interfacial phenomena models to achieve the highest possible fidelity in predicting thermodynamic and corrosion behaviors within OLI’s simulation software platform
Project Leadership: Provide technical expertise to guide the development of our project portfolio, identifying opportunities, and ensuring alignment with industry needs.
Customization and Parameterization: Tailor and optimize models for industrial systems to enhance their predictive capabilities in key sectors such as oil and gas, metals and mining, power generation, and water treatment.
Client Collaboration: Work closely with clients to ensure our modeling solutions meet their unique simulation needs and provide expert guidance on model application and interpretation.
Multidisciplinary Collaboration: Collaborate with a team of physical property researchers, process system engineers, and software developers to drive innovation and solve complex problems.
Research Partnership: Engage with universities and national laboratories on joint theoretical and experimental studies that tackle important societal issues, particularly in sustainability and asset integrity.
PhD in Chemical Engineering, Physical Chemistry, Materials Science, or a related field.
Postdoctoral experience in academia or industry is preferred.
Proven research expertise in thermodynamics and physical properties of electrolyte and/or non-electrolyte containing systems or electrochemical corrosion modeling.
Proven research expertise in solving phase and chemical equilibrium problems, including vapor-liquid-solid phases, using various types of equations of state and activity coefficient models.
Demonstrated strong background in fundamentals-based modeling, particularly in the areas of reaction kinetics, heat and mass transfer in unit operations, and design for advanced reactors or separation processes.
Experience in mechanistic model development and the application of simulation in key industrial verticals such as oil and gas, renewables, metals and mining, and water treatment.
Strong background in mathematical model development, numerical methods, and scientific programming (e.g.: C++, Python, MATLAB, Fortran).
Experience with process simulation platforms (e.g.: APSEN, HYSYS, Pro-II, OLI)
Experience with AI/ML applications (i.e.: Hybrid, PINNs).
Expertise in regression analysis, data interpretation, and model parameterization.
Extensive experience in analyzing and modeling electrolyte and thermophysical properties for various scientific applications.
Transport and fluid flow modeling experience a plus.
An opportunity to be a part of a groundbreaking team that is redefining industrial chemistry modeling.
A collaborative and dynamic work environment where your contributions are valued and recognized.