In the real world, product performance varies by operating conditions, consumer usage, manufacturing processes and material properties. As products become increasingly complex, it is more challenging for engineers to fully understand the performance implications of design variations. Multiphysics simulation technology enables companies to make informed decisions based on insight gained from these analyses to deliver optimal results. Built on a platform that streamlines workflow among simulation applications, ANSYS 14.5 delivers many new and critical multiphysics solutions, enhancements to pre-processing and meshing capabilities as well as a new parametric high-performance computing (HPC) licensing model to make design exploration more scalable.
"It's no secret that while today's products are getting smarter, they're also becoming more complex," said
NEW PARAMETRIC LICENSING SOLUTIONS FOR DESIGN EXPLORATION
ANSYS 14.5 builds on a tradition of HPC leadership. The technology supports robust design exploration via a combination of Workbench's enhanced parametric simulation technology with improved job management and a new HPC licensing solution that enables scalable throughput computing.
Specifically, the new HPC Parametric Pack amplifies the available licenses for individual applications (pre-processing, meshing, solve, HPC, post-processing), enabling simultaneous execution of multiple design points while consuming just one set of application licenses.
CHIP—PACKAGE—SYSTEM DESIGN FLOW
To meet increasing market demands of higher performance, smaller size and lower-cost electronics, the design of electronic chips, packages and systems requires an integrated analysis and verification methodology. To resolve these challenges, ANSYS 14.5 introduces the first chip—package—system (CPS) design flow on the market. This coupled approach addresses multidisciplinary requirements from the first phase of the design process and results in a final product whose individual components work together as an integrated system.
ANSYS 14.5's new CPS design flow links ANSYS subsidiary Apache Design's integrated circuit (IC) power analysis products to ANSYS' electromagnetic field simulation products. Additionally, the power delivery network channel builder automatically connects electronic package models from ANSYS SIwave™ to IC power simulations in Apache's RedHawk™ and Totem™ for increased convenience.
ADVANCED MESHING SOLUTIONS
Users of ANSYS 14.5 can create higher-fidelity simulation results faster. ANSYS TGrid™ functionalities are integrated in the ANSYS Fluent® environment in version 14.5 to further reduce pre-processing time. CAD readers and new advanced surface meshing capabilities are also integrated and available in a single user environment. Additionally, meshing enhancements allow for higher-quality hexahedral meshes that result in smaller problem size and overall reduced solver time.
COMPLEX 3-D COMPOSITES SHAPE SIMULATION
The use of composites parts across different industries is growing due to their ability to reduce the weight of a product. While many composites can be efficiently modeled as thin structures, some complex geometries, such as turbine blades, pressure vessels and automotive structures, require the setup of 3-D models and their inclusion within larger assemblies made of non-composites parts. ANSYS Workbench provides the necessary framework and streamlined workflow in version 14.5 to further improve the ability to create 3-D layered composites from complex geometry and conveniently combine them with non-composites parts in global assemblies.
EXTENDED FLUID—THERMAL MULTIPHYSICS CAPABILITIES
Continuing its history of innovation in multiphysics, ANSYS 14.5 introduces extended fluid—thermal capabilities, such as two-way coupling between fluid simulation in ANSYS Fluent and electromagnetic field simulation in ANSYS Maxwell®. The ANSYS Workbench platform supports the efficient coupling of multiple physics models and, when paired with this new feature, users can quickly and accurately predict losses and understand the effects of temperature on material performance in electromechanical devices such as motors and transformers.
A holistic solution for one-way thermal—fluid—structure interaction (FSI), ANSYS system coupling supports a wide variety of one-way thermal FSI workflows, which promotes higher-fidelity simulations. Furthermore, the robustness of coupled two-way force/displacement FSI is enhanced, allowing engineers to gain insight into their complete products more quickly and with less hassle. A global liquid food packaging and processing leader, Tetra Pak, has seen marked improvements with 14.5's new two-way FSI capabilities:
"Historically, simulating two-way FSI has been an incredibly time-consuming and complex process and, in some applications, not even possible," said
ESTEREL TECHNOLOGIES SCADE SUITE® COUPLING WITH ANSYS SIMPLORER®
A systems-level engineering approach that brings hardware and software together earlier in the design process is crucial to avoiding design errors being introduced at a point when changes are costly.
With the integration of recently acquired ANSYS subsidiary Esterel Technologies' SCADE Suite with ANSYS Simplorer in version 14.5, companies can virtually validate power electronic and mechatronic systems earlier in the design process by simulating the embedded software with the hardware, including electrical, mechanical and fluidic subsystems. This capability increases the design fidelity and boosts confidence that products will perform as expected in the real world.
ANSYS HFSS™ FOR ECAD INTEGRATION
As companies face pressure to do more with their current engineering resources, ANSYS 14.5 further streamlines the design workflow and introduces ANSYS HFSS for ECAD. This capability contributes to accuracy by enabling engineers to run complex 3-D HFSS simulations directly from the ANSYS Designer layout-based interface and from other popular layout-based ECAD environments.
ANSYS version 14.5 is available for download via the ANSYS Customer Portal: https://www1.ansys.com/customer/default.asp
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ANSYS brings clarity and insight to customers' most complex design challenges through fast, accurate and reliable engineering simulation. Our technology enables organizations ― no matter their industry ― to predict with confidence that their products will thrive in the real world. Customers trust our software to help ensure product integrity and drive business success through innovation. Founded in 1970, ANSYS employs approximately 2,400 professionals, many of them expert in engineering fields such as finite element analysis, computational fluid dynamics, electronics and electromagnetics, and design optimization. Headquartered south of
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