NEW YORK, NY and LONDON, UNITED KINGDOM--(Marketwired - February 22, 2017) -
- Software's photo-realistic visuals enhance understanding of simulation results
- Adaptive Gridding accelerates simulation of combustion models
- New Solid Oxide Fuel Cell models used to generate clean electricity
The latest release of Siemens' STAR-CCM+
"STAR-CCM+ version 12.02 is exclusively focused on making engineers more effective and enabling them to more quickly discover better designs, faster using predictive engineering technology," said Jean-Claude Ercolanelli, senior VP of Product Management at Siemens PLM Software. "These same engineers are also increasingly called upon to communicate their results across their organizations, to people who have little direct exposure to interpreting simulation results. Such a new functionality in STAR-CCM+ greatly facilitates this communication using Digital Twin simulation models that not only behave like their real-world counterparts, but also present a precise visual representation, promoting understanding and inspiring confidence."
STAR-CCM+ v12.02 introduces Ray Tracing, a capability that allows engineers to apply photo-realistic renderings to their design and simulation results, utilizing similar technology that is used to provide the computer-generated imagery (CGI) special effects in movies and computer games. This enhanced visualization capability is particularly useful when communicating the results of simulations to stakeholders outside of the core simulation community.
In addition to providing new tools for the analysis of simulation results, STAR-CCM+ v12.02 adds capabilities to accelerate simulation throughput for products that deal with reacting flows, such as furnaces, reformers, internal combustion engines and gas turbines. The new Adaptive Gridding capability for combustion tables significantly reduces computational effort without any loss of accuracy. Applicable to all flamelet combustion models, adaptive gridding can reduce table size and corresponding memory usage by up to 30 times, increasing efficiency and allowing engineers to iterate designs more quickly.
This version also includes multi-component gas/liquid species and solid ions models used to analyze electrochemical reactions, such as those that occur in Solid Oxide Fuel Cells (SOFC). SOFC are increasingly being used to generate efficient and clean electricity, and STAR-CCM+ users are now able to create a digital twin to improve further the efficiency of their Solid Oxide Fuel Cells, resulting in cleaner electricity generation cells.
For more on the new features available in STAR-CCM+ v12.02 that drive technology, elevate user experience and increase productivity, please visit our blog page and www.siemens.com/mdx.
Siemens AG (Berlin and Munich) is a global technology powerhouse that has stood for engineering excellence, innovation, quality, reliability and internationality for more than 165 years. The company is active in more than 200 countries, focusing on the areas of electrification, automation and digitalization. One of the world's largest producers of energy-efficient, resource-saving technologies, Siemens is a leading supplier of efficient power generation and power transmission solutions and a pioneer in infrastructure solutions as well as automation, drive and software solutions for industry. The company is also a leading provider of medical imaging equipment -- such as computed tomography and magnetic resonance imaging systems -- and a leader in laboratory diagnostics as well as clinical IT. In fiscal 2016, which ended on September 30, 2016, Siemens generated revenue of EUR79.6 billion and net income of EUR5.6 billion. At the end of September 2016, the company had around 351,000 employees worldwide. Further information is available on the Internet at www.siemens.com.
Note: Siemens and the Siemens logo are registered trademarks of Siemens AG. STAR CCM+ is a trademark or registered trademark of Computational Dynamics Limited. Simcenter is a trademark or registered trademark of LMS International N.V. or any of its affiliates. All other trademarks, registered trademarks or service marks belong to their respective holders.
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