Custom modeling capability
Capabilities like advanced parameter estimation, global system analysis, optimization and experiment design bring new dimensions to chemical engineering teaching not available with traditional black box simulators.
gPROMS Academic supports chemical engineering research and teaching by offering full-functionality gPROMS product licenses to universities. It helps speed up research by enabling users to create mathematical models and generate results rapidly without programming.
gPROMS equation-oriented modeling helps researchers explore complex new areas of process development such as biochemicals and nanotechnology .Siemens provides these equation-oriented modeling products at a small fraction of the commercial price. SPSE supports teaching with the PATH initiative, which provides materials that help professors create courses.
Create fit-for-purpose mathematical models, calibrate these against experimental data and generate results rapidly using a variety of analytic and optimization techniques.
Create fit-for-purpose mathematical models, calibrate these against experimental data and generate results rapidly using a variety of analytic and optimization techniques.
gPROMS’ industry-leading custom modelling capability means that, while you can take advantage of state-of-the-art models, you are not restricted to off-the-shelf, black-box models.
Capabilities like advanced parameter estimation, global system analysis, optimization and experiment design bring new dimensions to chemical engineering teaching not available with traditional black box simulators.
Using optional gPROMS Objects, first principles models can integrate with CFD simulations, MATLAB® and CAPE-OPEN process simulators. You can deploy models within Excel or through a web interface.
Because of our origins at Imperial College London, SPSE has a long history with universities and research organizations. Over 200 institutions already use gPROMS to achieve rapid results across a wide range of research topics.