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ANSYS Workbench and ANSYS DesignXplorer PDF

28 Pages·2012·9.14 MB·English
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Preview ANSYS Workbench and ANSYS DesignXplorer

ANSYS Workbench and DesignXplorer Gilles Eggenspieler Senior Product Manager 1 © 2011 ANSYS, Inc. May 14, 2012 Agenda • The path to robust design • A closer look at what DX offers • Some examples 2 © 2011 ANSYS, Inc. May 14, 2012 The Path to RRoobbuusstt DDeessiiggnn Robust Design is an Robust Design ANSYS Advantage •Six Sigma Analysis Optimization •Probabilistic Algorithms •Algorithms •Adjoint solver •Published API methods Design Exploration ••DDOOEE,, RReessppoonnssee SSuurrffaacceess,, ““WWhhaatt iiff”” Correlation, Sensitivity, Study Unified reporting, etc. •Parametric Multiphysics Platform Solution •Integration Single Physics Platform Solution •Accuracy, robustness, speed… 3 © 2011 ANSYS, Inc. May 14, 2012 Single Physics/Multi Physics Single physics is the entry point to Fluid Pressure Simulation Distribution Multi-Physics enables real virtual prototyping Stress ? 2 way coupled with a transient structural solution Electromagnetic Force Density with Thermal-Stress and Electromagnetic Force load Deformation of the Stator ? 4 © 2011 ANSYS, Inc. May 14, 2012 “What If?” Interactively adjust the parameter values and “Update” Needed for "What If?" (cid:1) Parametric CAD Connections (cid:1) Pervasive Parameters (cid:1) Persistent Updates (cid:1) Managed State, Update Mechanisms Parametric Persistence is (cid:1) Remote Solve Manager (RSM) (cid:1) … an ANSYS Advantage! 5 © 2011 ANSYS, Inc. May 14, 2012 Design Exploration Design Exploration is an ANSYS Advantage 6 © 2011 ANSYS, Inc. May 14, 2012 Optimization Optimal Candidates 7 © 2011 ANSYS, Inc. May 14, 2012 Structural Analysis with Fatigue module Life TTuurrbbiinnee bbllaaddee rroooott ddeessiiggnn Initial Minimum Result FFaattiigguuee lliiffee ooppttiimmiizzaattiioonn Input Parameters: ddss__xxttiilltt ds_ytilt Optimized Candidate ds_rootrad Output Parameter: Goal Driven Optimization Minimum Life using MOGA algorithm Response Surface based on 15 DOE runs DOE; Central Composite Difference Algorithm 3 input parameters => 15 design points 8 © 2011 ANSYS, Inc. May 14, 2012 Thermal Stress Pressure & Flow Velocity Parametric Geometry Deformation EExxhhaauusstt mmaanniiffoolldd ddeessiiggnn SSSSiiiixxxx SSSSiiiiggggmmmmaaaa AAAAnnnnaaaallllyyyyssssiiiissss All samples reports Maximum Displacement should not exceed 1.5 mm max deformation (cid:1)Input Parameters (cid:1)ResponseParameters below 1.5 mm (cid:1)Outlet Diameter of the (cid:1)Max Flow Temperature manifold (cid:1)Max Deformation (cid:1)Thickness at inlet (cid:1)Max Von-Misesstress (cid:1)External Temperature (cid:1)Engine RPM Response Surface showing Uncertainty the effect of engine speed of input and thickness at outlet on parameters the maximum deformation 9 © 2011 ANSYS, Inc. May 14, 2012 Robust Design Tools at ANSYS • ANSYS DesignXplorer – Unified Workbench solution • ANSYS Fluent – Built-in Mesh Morphing and shape Optimization (MMO) tools Baseline Design • Being hooked up to DX for 14.5 –– AAddjjooiinntt ssoollvveerr Optimized Design High sensitivity – changes to shape have a big effect on drag High sensitivity – Shape on Downforce Low sensitivity RR1144 10 © 2011 ANSYS, Inc. May 14, 2012

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Unified Workbench solution. •ANSYS Fluent. – Built-in Mesh Morphing and shape Optimization (MMO) tools. • Being hooked up to DX for 14.5.
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