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Pre-Certification of ROPS for Agricultural Tractors Through CAE Technology - Presentation

Page 1. Pre-certification of ROPS for agricultural tractors through CAE technology Igor Saveljevas Rodrigues - VirtualCAE Page 2. Topics • Company : VirtualCAE • Federal Regulation • Norm : ABNT NBR ISO 5700:2009 • Agriculture companies • Static analysis: – Simplifications ...

Author: Igor Saveljevas Rodrigues - VirtualCAE
Type: Presentation
Date: Sep 15 2014
Product Category: Structural Mechanics
Industry: Automotive

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Multiphase Simulationofa Pumping Module - Presentation

Page 1. Multiphase Simulation of a Pumping Module ESSS Bruno Contessi Clarissa Fonte Carlos Fontes CENPES/PETROBR�?S Luis Carlos Tosta UO-ES/PETROBR�?S Victor Teixeira Otavio Ciribelli Gustavo Betônico Page 2. PRESENTATION TOPICS • Company Overview ...

Author: Luis Carlos Tosta, Victor Teixeira, Otavio Ciribelli and Gustavo Betônico - Petrobras
Bruno Contessi, Clarissa Fonte and Carlos Fontes - ESSS
Type: Presentation
Date: Sep 15 2014
Product Category: Structural Mechanics
Industry: Energy

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Internal Sealing Performance of a Hydrotreating High-Pressure Heat Exchanger - Presentation

Page 1. Internal Sealing Performance of a Hydrotreating High Pressure Heat Exchanger Rafael Pavan Bagagli 21/05/2014 Page 2. Summary • Company Overview; • Problem Description; • Methodology; • Goals; • Conclusions. Page 3. Company Overview ...

Author: Rafael Pavan Bagagli - Petrobras
Type: Presentation
Date: Sep 15 2014
Product Category: Structural Mechanics

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Underhood Thermal Modeling Using ANSYS Fluent - Webinar
Full-vehicle underhood thermal management (UTM) CFD simulation is crucial in the vehicle development cycle, improving vehicle quality and reliability while reducing development cost and time. Engineers employ UTM simulation to predict the performance of engine cooling modules in an underhood environment as well as to predict the temperature of sensitive components near heat sources, such as exhaust systems and turbo-chargers. ANSYS Fluent contains different sub-models to perform these types of simulations. This webinar provides an overview of the models and latest procedures. At the conclusion, ANSYS experts answer any questions you may have.

Author: ANSYS, Inc.
Type: Webinar
Date: Sep 05 2014
Product Name: ANSYS Fluent
Product Category: Fluid Dynamics
Industry: Energy

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Application Customization Toolkit Extensions Available for ...
The ANSYS Application Customization Toolkit (ACT) is a package of tools that enable users to customize ANSYS Mechanical, ANSYS DesignModeler and ANSYS DesignXplorer. ACT provides simple programming level access to the main components of each product (e.g., GUI, mesh, geometry, boundary conditions, etc.) in a Python programming environment. For ANSYS Mechanical, ACT can create specialized interfaces that replace MAPDL command objects. It can also create tool bars to simplify other Mechanical actions. A major benefit of ACT is that after developing these easy-to-use extensions, users can share with others. ANSYS does not require an ACT license to install and use ACT extensions. In previous webinars, we have discussed how to use ACT to create customized extensions. Through ANSYS, users can download many developed and available ACT extensions. Some examples include an extension that allows easier definition of frequency dependent damping, an extension that simplifies completing piezoelectric analysis, and an extension that creates and applies varying pressure loading caused by wind. This webinar briefly discusses many of the currently available extensions, demonstrates how to access the ACT library and how to install the extensions. Future webinars discuss some of the most popular extensions in more detail.

Author: ANSYS, Inc.
Type: Webinar
Date: Sep 05 2014
Product Category: Structural Mechanics

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Recent Advancements in Electromechanical Simulation ...
By taking advantage of advancements in computer software and hardware, ANSYS Maxwell now has enhanced solver capability and new, exciting options that help engineers improve productivity. As the industry-standard simulation tool for electromechanical and electromagnetic components including electric machines and drives, actuators, solenoids, sensors, transformers and inductors, numerous enhancements in recent years have continued to improve the software. Join us for a one-hour webinar highlighting advancements in ANSYS Maxwell. Topics include:

  • Maxwell solver and meshing improvements
  • Flexible licensing schemes
  • Powerful scripting capability to customize design flow
  • Advanced material modeling, including core loss and temperature dependence
  • Magnetic component integration with power electronics and control
  • Multiphysics simulation with thermal–structural analysis
  • Design parameter sweep, optimization, exploration and statistical study capabilities
  • High-performance computing to reduce simulation time

Author: ANSYS, Inc.
Type: Webinar
Date: Sep 05 2014
Product Name: ANSYS Maxwell

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Coupled Piezoelectric–Structural–Fluids Analysis - Webinar
Simulation of piezoelectric devices is common practice in ANSYS Mechanical and ANSYS MAPDL, but it is less common to model the interaction of piezoelectric devices with the surrounding fluid medium. The damping provided by the fluid medium and the flow induced by piezoelectric displacements can be an important factor in designing piezoelectric devices. This webinar will demonstrate a multiphysics simulation using ANSYS Workbench to couple a piezoelectric solution in ANSYS Mechanical with a fluids solution in ANSYS Fluent. The System Coupling component of ANSYS Workbench is used to perform a full two-way fluid–structure interaction simulation. This type of multiphysics simulation is suitable for modelling MEMS devices where fluid damping is important, such as squeeze-film dampers and gyroscopes. This method also provides accurate flow-field predictions, which are required in inkjet printer nozzles for example. A common design for an inkjet printer nozzle incorporates a piezoelectric material that squeezes a structure surrounding an ink cavity. The resulting increase in fluid pressure forces ink droplets out of the nozzle. This webinar will use an inkjet nozzle to demonstrate a coupled piezoelectric–structural–fluids analysis.

Author: ANSYS, Inc.
Type: Webinar
Date: Sep 05 2014
Product Name: ANSYS Fluent
Product Category: Fluid Dynamics

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FEM-based Modeling, Simulation and Calibration of Hydraulic Fracturing for Oil and Gas Applications - Presentation

... Dynardo's multiPlas solves multisurface plasticity inside ANSYS • Jointed rock is modeled as combination of isotropic Mohr- ... to 4 joint sets results in anisotropic hydraulic conductivity matrix → Dynardo provides an anisotropic hydraulic finite element for ANSYS (USER300) ...

Author: Johannes Will - Dynardo GmbH
Type: Presentation
Date: Sep 04 2014
Industry: Energy

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Using HPC to Accelerate ANSYS Structural Mechanics ...
This webinar presents benefits of HPC parallel and parametric processing. It also demonstrates numerous real-world customer example applications as well as provides HPC scaling data of ANSYS Mechanical.

Type: Webinar
Date: Aug 19 2014
Product Name: ANSYS Mechanical
Product Category: High Performance Computing

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Fatigue Module Upgrade: Designing for Durability in Real Life ...
The ANSYS fatigue module helps engineers easily and conveniently simulate fatigue life for products with limited types of loading. However, many products must survive environments that cannot be represented with simple loadings. Trade-offs to reduce weight while increasing product life requires the use of new materials with properties that are not available within the fatigue module. ANSYS nCode DesignLife is the logical alternative to overcome the limitations of the ANSYS fatigue module. It is the most efficient tool to design modern, durable products. This webinar explains how the fatigue module limitations can be overcome with ANSYS nCode DesignLife to allow you to work efficiently and optimize the durability of your product.

Type: Webinar
Date: Aug 04 2014
Product Name: ANSYS nCode DesignLife
Product Category: Structural Mechanics

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