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Fluid-Structure Interaction in Turbomachinery - Webinar
As known ANSYS offers a full non-linear and general solution for Fluid-Structure Interaction. In many applications a specific modelling of the interaction is accurate enough and much faster than the general solution. This presentation will show how the specific modelling for turbomachinery looks like: steady state solutions for fluid and structure, forced response analysis to compute dynamic stresses, blade flutter to compute aerodynamic damping. A special remark is on the vibro acoustic, which takes fluid dynamics into account, while computing the eigen-frequencies and -mode shapes. The forced response procedure and it's coupling can be applied to all mechanical systems, where periodic loads act on, i.e. turbo machines (periodic pressure) or electric motors or generators (periodic electromagnetic forces).

Author: ANSYS
Type: Webinar
Date: Apr 16 2015
Industry: Industrial Equipment

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Copper Backplane Power Loss in an Age of Increasing Data ...
With the recent explosion of online streaming services and continuing demand on bandwidth data rates there is a need for more accurate modeling of losses due to the propagating medium, periodic structures and rough surfaces. This webinar will provide a review of the barriers to higher data rates brought about by electromagnetic interactions within copper conductor printed circuit boards. The webinar will also discuss how this research has been developed into commercially available electromagnetic field solvers.

Author: ANSYS
Type: Webinar
Date: Apr 16 2015
Product Category: Electronics
Industry: High Tech

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Developing Cutting-Edge, Lighter-Than-Air Vehicles at Aeros ...
The Role of Physics-Based Simulation in Developing Lighter-Than-Air Vehicles Watch this webinar and learn how physics-based simulation helped Aeros overcome the business challenges of getting a successful lighter-than-air vehicle to market and approved by the regulator and the critical role that physics-based simulation played in this process. Aeros is America's most innovative FAA-certified lighter-than-air vehicle manufacturing company and their products are used for both military and commercial applications.

Author: ANSYS
Type: Webinar
Date: Apr 16 2015
Industry: Aerospace & Defense

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ANSYS Solutions for Wireless Power Transfer - Webinar
Wireless power transfer technology started with small mobile devices such as cell phones, laptops and implantable medical devices; it is now being applied to automotive EV charging systems, which require larger power capacities in a very limited space. The key component is a loosely coupled transformer with a large air gap, whose design requires coupled electromagnetic field analysis and circuit simulation. Attend this webinar to learn how to deal with this design challenge using a systems-level approach with dynamically linked parameters between the circuit and 3-D magnetic FEA model. You will discover how ANSYS Maxwell and ANSYS Simplorer can simplify wireless power transfer simulation using real-world examples, including magnetic resonance charging of electric vehicles.

Author: ANSYS
Type: Webinar
Date: Apr 15 2015
Product Category: Electronics

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Analyzing Fluid Film Bearings and Rotordynamics with ...
Fluid film bearings, such as journal bearings and hydrostatic bearings, support structural loads using high-pressure fluid films. These bearing provide low friction, low wear, low vibration performance and are quieter when compared with contact bearings such as ball bearings. Journal bearings are dynamic bearings with the fluid film pressure generated by the motion of the journal while hydrostatic bearings use a pump to supply high-pressure fluid. The performance of both types of fluid film bearings depends upon a number of factors that can be examined using simulation. During the webinar, an ANSYS specialist will demonstrate how to solve for the static equilibrium position of a journal bearing (the fluid pressure balances the applied structural loads). The demonstration will include fluid cavitation and the effects of fluid—structure interaction. The engineer will characterize the dynamic performance of the journal bearing by calculating stiffness and damping properties. Finally, dynamic characteristics will be used to determine how the bearing interacts with the rotor system and determine the machine’s vibrational behavior.

Author: ANSYS
Type: Webinar
Date: Apr 15 2015

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The SCADE Academic Program: Exploring the Benefits with ...
The European Train Control System (ETCS) will replace the existing mix of train control systems in Europe to ease interoperability and cross-border traffic for railways. The Technical University of Braunschweig, Germany, a participant in the overarching OpenETCS project, is a key member of the SCADE Academic Program, which uses ANSYS SCADE software for model-based systems engineering and certified software development. Join this webinar to learn how SCADE supports research activities at the university, including how it has been tailored for small student projects to create vehicle control on a railway demonstrator. Discover the broader benefits of the SCADE Academic Program and how it supports engineering activities at universities around the world.

Author: ANSYS
Type: Webinar
Date: Apr 15 2015
Product Name: SCADE Suite

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Nouveaux horizons pour la simulation électromagnétique 3D ...
Aujourd'hui ANSYS HFSS est utilisé pour la simulation électromagnétique 3D sur une gamme étendue de composants et de modules comme les antennes, les composants passifs, les connecteurs haut débit, les circuits imprimés (PCB) ou encore les interconnexions de circuits intégrés (IC packages). Ces composants et modules sont utilisés dans des applications variées de divers domaines : circuit intégré radio fréquence (RFIC), liens séries haut débit, automobile, aéronautique et défense. La complexité des géométries de ces composants et modules ne cesse de s'accroître et leur taille devient électriquement large avec pour conséquence l'augmentation des temps de simulation. En parallèle, l'optimisation du cycle de développement ainsi que la réduction des temps de mise sur le marché d'un produit poussent à réduire les temps de simulation. L'utilisation des calculs parallèles - High Performance Computing (HPC) - fournit donc une réponse à ces défis. L'utilisation d'ANSYS HFSS avec HPC ouvre des possibilités multiples de calculs parallèles : multithreading (MT), méthode de décomposition de domaine (DDM), méthode de décomposition spectrale (SDM), etc... Lors de ce webinar, des exemples d'applications incluant : composants passifs intégrés (inductance spirale, capacité), placement d'antennes sur véhicule, réseau d'antennes, circuit imprimé et interconnexion seront présentés. Nous détaillerons également, pour chaque exemple, les p

Author: ANSYS
Type: Webinar
Date: Apr 13 2015

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Introducción a los cálculos estructurales con ANSYS ...
Las simulaciones estructurales permiten predecir la respuesta mecánica de un producto durante las etapas iniciales de diseño. Tanto si se desea analizar la deformación, las vibraciones o la vida útil, las herramientas de simulación proporcionan acceso a una gran cantidad de información sobre la que basar las decisiones a tomar durante el diseño. Durante este seminario, repasaremos que se puede esperar de una simulación estructural y como se puede utilizar en el proceso de diseño. ANSYS Mechanical será presentado y descrito con una gran variedad de ejemplos, así como las técnicas para optimizar el diseño posibles acoplamientos con otras físicas.

Author: ANSYS
Type: Webinar
Date: Apr 09 2015
Product Category: Electronics

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Panasonic Corporation and ANSYS
Panasoinc Corporation uses ANSYS tools in a coupled manner for a wide range of applications. The software allows the company to reduce development time The engineering team depends on the experience of of ANSYS experts to support them in innovative uses of simulation.

Type: Testimonial
Date: Apr 09 2015
Product Category: Electronics
Industry: Consumer Products

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Toyota Motor Corporation and ANSYS
The drivetrain unit engineering design division of Toyota Motor Corporation applies ANSYS mulitphysics simulation to the design of fuel cells and hybrid and electric vehicles as well as automotive powertrains to address environmental issues and challenges related to stress, NV, fluids and product optimization. Simulation helps the company reduce man-hours and the cost of prototyping for entire systems. For more information on improving drive unit reliability see Playing It Cool.http://www.ansys.com/staticassets/ANSYS/staticassets/resourcelibrary/article/AA-V6-I3-Playing-It-Cool.pdf

Type: Testimonial
Date: Apr 09 2015
Product Category: Fluid Dynamics
Industry: Automotive
Sub-Industry: Car & Light Truck OEMs

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