새로운 프로그램을 위한 혁신적이며, 협업이 가능한 동기화된 프로그램 관리
Ever stricter noise and emission regulations put enormous pressure on gas turbine engine makers. At the same time, energy efficiency, reliability and safety are function-critical. Overall performance, as a combination of these design criteria, depends on the interaction of an ever-increasing amount of highly specialized subsystems. Both in terms of structure and process, jet engine assemblies are very complex and require the collective knowledge of multiple domain experts.
To develop aircraft engines that have the right balance between functional performance requirements, manufacturers require an engineering platform that provides an integrated view of a large set of disciplines. At the same time, they also need the most advanced tools for individual applications. The right solution will support the decision-making process by delivering deep engineering insight on all levels, from component to full system, while also facilitating data streams between specialists.
Siemens Digital Industry Software uniquely combines robust design space exploration, scalable multi-physics, dynamics and CFD capabilities, industry-leading physical testing and experienced engineering services to support aircraft engine design from concept to certification. In addition, our solutions include dedicated tools for very specific aircraft engine design applications, including combustion, rotor dynamics, thermo-mechanical structural analysis, turbine testing and more.
Learn how to evaluate hundreds of designs for ice protection in the time it traditionally takes to look at one.
항공기 성능 엔지니어링: 선 비행, 후 제작
도심 항공 모빌리티 기업이 머신 러닝을 사용해 설계 혁신을 주도하고 GoFly X 콘테스트를 위한 경쟁력을 강화한 방법에 대해 알아보십시오
디지털 리스크 트윈을 통한 RAMS 항공우주 프로세스 가속화