Innovation et gestion de programmes synchronisée et collaborative pour les nouveaux programmes
Aérospatiale & Défense
Innovation et gestion de programmes synchronisée et collaborative pour les nouveaux programmes
Explorer l’industrieAutomobile et Transports
Integration of mechanical, software and electronic systems technologies for vehicle systems
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Innovation produit grâce à la gestion efficace et intégrée des formulations, du packaging et des procédés de fabrication
Explorer l’industrieÉlectronique & semi-conducteurs
Le développement de nouveaux produits exploite les données pour améliorer la qualité et la rentabilité tout en réduisant les délais de mise sur le marché et les coûts.
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Supply chain collaboration in design, construction, maintenance and retirement of mission-critical assets
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Construction, mining, and agricultural heavy equipment manufacturers striving for superior performance
Explore IndustryConstructions mécaniques et équipements lourds
Integration of manufacturing process planning with design and engineering for today’s machine complexity
Explorer cette industrieInsurance & Financial
Visibility, compliance and accountability for insurance and financial industries
Explore IndustrySecteur maritime
Innovation dans la construction navale pour réduire de façon durable le coût de développement des futures flottes
Explorer l’industrieMedia & Telecommunications
Siemens PLM Software, a leader in media and telecommunications software, delivers digital solutions for cutting-edge technology supporting complex products in a rapidly changing market.
Explore IndustryAppareils Médicaux et Produits Pharmaceutiques
« Innovation produit personnalisée » grâce à la digitalisation, pour répondre à la demande du marché et réduire les coûts
Explorer l’industrieSmall & Medium Business
Remove barriers and grow while maintaining your bottom line. We’re democratizing the most robust digital twins for your small and medium businesses.
Explore IndustryCFD for Medical Device Design and Development
CFD for Medical Device Design and Development
A comprehensive digital twin incorporates patient-specific characteristics
Shortening the amount of time it takes to get products to market—this is a concern shared by all manufacturers across all industries. In the medical device industry, this objective takes on additional importance, as it means that lifesaving and life-sustaining devices and treatments can get to patients more quickly. In the case of respiratory devices, Computational Fluid Dynamics (CFD) simulation is a critical enabling technology for realizing this objective, as will be discussed in this webinar, with guest speaker Dr. Chris Varga, Senior Engineering Fellow at Vyaire Medical.
How pervasive is the use of simulation at Vyaire? “I can’t think of any product that is in development today that we’re not using CFD for,” says Dr. Varga. At Vyaire, CFD is used in early stage research, feasibility studies, and design studies performed prior to building prototypes. Concepts for device designs will sometimes start within the simulation tool—the same tool that is also used to resolve issues encountered much later in the device development process, including during manufacturing.
And since patients come in a variety of shapes and sizes and also breathe in a variety of ways (some people are "mouth breathers”, some are "nose breathers"), simulations must account for the fact that each patient has a unique breathing profile that depends on their lung function and structure. The ability to perform detailed simulations of all their use cases, combined with the time and cost savings resulting from a reduced reliance on expensive prototypes represent just two of the ways in which Vyaire’s investment in simulation has paid off.
Dr. Chris Varga, Senior Engineering Fellow, Vyaire Medical
Javier Garriz, Marketing Manager, Siemens Digital Industries Software
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A comprehensive digital twin incorporates patient-specific characteristics
Shortening the amount of time it takes to get products to market—this is a concern shared by all manufacturers across all industries. In the medical device industry, this objective takes on additional importance, as it means that lifesaving and life-sustaining devices and treatments can get to patients more quickly. In the case of respiratory devices, Computational Fluid Dynamics (CFD) simulation is a critical enabling technology for realizing this objective, as will be discussed in this webinar, with guest speaker Dr. Chris Varga, Senior Engineering Fellow at Vyaire Medical.
How pervasive is the use of simulation at Vyaire? “I can’t think of any product that is in development today that we’re not using CFD for,” says Dr. Varga. At Vyaire, CFD is used in early stage research, feasibility studies, and design studies performed prior to building prototypes. Concepts for device designs will sometimes start within the simulation tool—the same tool that is also used to resolve issues encountered much later in the device development process, including during manufacturing.
And since patients come in a variety of shapes and sizes and also breathe in a variety of ways (some people are "mouth breathers”, some are "nose breathers"), simulations must account for the fact that each patient has a unique breathing profile that depends on their lung function and structure. The ability to perform detailed simulations of all their use cases, combined with the time and cost savings resulting from a reduced reliance on expensive prototypes represent just two of the ways in which Vyaire’s investment in simulation has paid off.
Dr. Chris Varga, Senior Engineering Fellow, Vyaire Medical
Javier Garriz, Marketing Manager, Siemens Digital Industries Software
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