Inovação e gerenciamento de programa sincronizado e colaborativo para novos programas
Aeroespacial e Defesa
Inovação e gerenciamento de programa sincronizado e colaborativo para novos programas
Explorar o SetorAutomotivo e Transporte
Integration of mechanical, software and electronic systems technologies for vehicle systems
Explorar o SetorProdutos de Consumo e Varejo
A inovação de produtos através do gerenciamento eficaz de formulações, embalagens e processos de manufatura integrados
Explore o SetorEletrônicos e Semicondutores
O desenvolvimento de novos produtos aproveita dados para melhorar a qualidade e a lucratividade e reduz custos e tempo de introdução no mercado
Explore o SetorEnergia e Utilidades
Supply chain collaboration in design, construction, maintenance and retirement of mission-critical assets
Explorar o SetorHeavy Equipment
Construction, mining, and agricultural heavy equipment manufacturers striving for superior performance
Explore IndustryMáquinas Industriais e Equipamento Pesado
Integration of manufacturing process planning with design and engineering for today’s machine complexity
Explorar o SetorInsurance & Financial
Visibility, compliance and accountability for insurance and financial industries
Explore IndustryMarinha
Inovação na construção naval para reduzir de maneira sustentável o custo do desenvolvimento de frotas futuras
Explore o SetorMedia & 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 IndustryDispositivos Médicos e Farmacêuticos
“Inovação de produtos personalizados" através da digitalização para atender a demandas do mercado e reduzir custos
Explore o SetorSmall & 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 IndustryJet engine performance engineering
Jet engine performance engineering
Enable the next generation of jet engine technology
In this webinar, you will learn how digital twins can help jet engine and gas turbine manufacturers model the most complex physics faster than ever before.
Aircraft engine designers are facing stricter environmental and regulatory constraints and a push for new, greener fuels which require innovative combustion design concepts. To meet ever shorter development timelines, engineers need to leverage simulation – now more than ever – to iterate quickly through novel design concepts and across different teams.
To effectively tackle design complexities and mitigate risks of failures, aircraft engine engineers need tools that enable an integrated approach that brings simulation and physical testing together. This webinar will share how digital twins enable you to predict jet engine emissions during the design phase. You’ll see how this approach to aircraft engine performance engineering results in lower emissions, shorter development time and reduced risks and costs.
Learn how to:
To improve the turnaround time and accuracy of the reacting large eddy simulations (LES) needed to support design iteration, aero-engine manufacturers have to look at enhancing and extending their simulation methodologies, incorporating accurate and flexible combustion models, fast and scalable solvers and automated multi-timescale workflows.
This webinar explores jet engine combustion with a Honeywell use case. You will see, based on combustor geometries:
Erik Munktell, Simcenter Solution Manager for Aircraft Engine, Siemens Digital Industries Software
Megan Karalus, Solution Consultant, Siemens Digital Industries Software
Olá Bob (será substituído com o primeiro nome real durante a visita do site real)
Queremos saber mais sobre você.
Olá Bob (será substituído com o primeiro nome real durante a visita do site real)
Você tem acesso a este webinar por 90 dias. Clique abaixo para iniciar a visualização.
Enable the next generation of jet engine technology
In this webinar, you will learn how digital twins can help jet engine and gas turbine manufacturers model the most complex physics faster than ever before.
Aircraft engine designers are facing stricter environmental and regulatory constraints and a push for new, greener fuels which require innovative combustion design concepts. To meet ever shorter development timelines, engineers need to leverage simulation – now more than ever – to iterate quickly through novel design concepts and across different teams.
To effectively tackle design complexities and mitigate risks of failures, aircraft engine engineers need tools that enable an integrated approach that brings simulation and physical testing together. This webinar will share how digital twins enable you to predict jet engine emissions during the design phase. You’ll see how this approach to aircraft engine performance engineering results in lower emissions, shorter development time and reduced risks and costs.
Learn how to:
To improve the turnaround time and accuracy of the reacting large eddy simulations (LES) needed to support design iteration, aero-engine manufacturers have to look at enhancing and extending their simulation methodologies, incorporating accurate and flexible combustion models, fast and scalable solvers and automated multi-timescale workflows.
This webinar explores jet engine combustion with a Honeywell use case. You will see, based on combustor geometries:
Erik Munktell, Simcenter Solution Manager for Aircraft Engine, Siemens Digital Industries Software
Megan Karalus, Solution Consultant, Siemens Digital Industries Software