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Webinar: Complete Supercritical Carbon Dioxide Power Cycles Systems Modeling in Flownex SE
Online
Using GoToTraining
  • 26th July 2016
    11:00 am - 11:03 am

Engineers turn their attention to Supercritical CO2 power cycles as one of the hottest new emerging technologies in the industry. Efficiency, lower cost and smaller footprints are all factors determining its attractiveness, not to mention its ability to be versatile with many different types of heat sources. Supercritical CO2 looks to replace the use of steam cycles because of its promise to provide increased power generation cycle efficiency. Join this webinar to see why Flownex SE is the perfect systems simulation tool for the design, analysis and optimisation of these cycles.

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Online, Using GoToTraining

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Wilde Analysis uses GoToTraining for online events. You can easily attend a session from anywhere, anytime using a compatible computer or mobile device. Join by downloading on Windows or Mac To get the most out of GoToTraining, you can download and install the full-featured desktop software on your Windows and Mac computer. Learn more.  

The Flownex Supercritical CO2 webinar will provide the following overview:

Design for optimal cycle efficiency
Flownex includes a fully integrated parametric study feature and sensitivity analysis feature to easily analyse changes in cycle efficiency with changes in design parameters. Solving times are typically in the order of a few seconds which allows users to run 100s of scenarios in only a few minutes.
Flownex also contains a large library of visualisation tools that allow engineers to quickly analyse the results in a graphical format for use in evaluating design changes.

Off design performance analysis
Flownex provides the capability to perform dynamic simulations of a supercritical C02 cycle over its full range of operation. This includes working fluid and turbo machinery inertia’s, heat capacitance and all other relevant dynamic behavior.

Multiple coupled cycle analysis
Flownex allows multiple cycles with different fluids to be simulated together in a dynamic environment. This can be useful in thermal storage design, waste heat recovery, control philosophy investigations, accident scenario simulations, etc.

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