Infographic

Innovate the future aircraft

Reading time: 3 minutes
Discover how siemens can help making flying sustainable… 15% smaller noise footprint of new aircraft, 1.5% annual improvement in fuel efficiency, 50% reduction in net aviation carbon dioxide emissions.

This infographic provides an overview of efforts to innovate the future aircraft, highlighting priorities related to making flight sustainable, the impact of electrifying propulsion and how electrification adds new complexity to the engineering process. It compares static and document-based engineering with dynamic and model-based engineering and outlines how a fly-it-before-you-build-it approach makes it possible to predict aspects of aircraft performance, optimize designs and innovate faster.


Aircraft design trends and sustainability

Reducing carbon dioxide emissions, improving fuel efficiency and minimizing the noise footprint of future aircraft are among industry priorities. Aircraft design trends and sustainability efforts in the industry related to these objectives include electrifying the propulsion of future aircraft. Timelines for electric air taxis, hybrid-electric aircraft and hydrogen or fuel cell aircraft are forecast within the next 25 years.

The effect of electric propulsion on the aircraft engineering process

The effect of electric propulsion on the aircraft engineering process is added complexity. Electrification is a pathway for aerospace operations to achieve priorities for reduced environmental impact, but operational siloes limit gains. Unlocking the potential of the digital twin and thread makes it possible to manage challenges in pursuit of faster innovation with model-based systems engineering.

Digital technologies transforming aerospace engineering

In addition to enabling priorities related to climate change, digital technologies transforming aerospace engineering are fueling operational improvements for all aspects of innovation in aerospace. Solutions like Simcenter improve collaboration, remove silos and enable integrated, dynamic performance in the development of future aircraft.

It’s time to rethink the next generation of aircraft engineering. This infographic is a great place to start.

Share

Related resources

Simcenter 3D solution guide
E-book

Simcenter 3D solution guide

Simcenter 3D is a comprehensive, fully-integrated CAE solution. Download this solution guide to learn how a unified, shared platform for all simulation disciplines can help you model complexity while being more productive.

Simcenter 3D trial
Trial

Simcenter 3D trial

Simcenter 3D is the most comprehensive, fully-integrated CAE solution on the market today for addressing complex, multidisciplinary product engineering performance by delivering revolutionary improvements in simulation efficiency.

Perfecting in-vehicle audio with model-based development and full-vehicle simulation
Case Study

Perfecting in-vehicle audio with model-based development and full-vehicle simulation

Mazda uses Simcenter 3D and HEEDS to optimize audio acoustic performance and reduce simulation from 2.5 days to 4 hours

Accelerating aircraft design using tool integration and automation
Case Study

Accelerating aircraft design using tool integration and automation

GA-ASI reduces detailed structural design time by 25 percent by using Siemens’ CAD tool suite

Creating detailed simulations to predict thermal and structural performance of high-bandwidth satellite communications equipment
Case Study

Creating detailed simulations to predict thermal and structural performance of high-bandwidth satellite communications equipment

Mynaric uses Simcenter 3D to reduce modeling time from one month to one week, a reduction of 83 percent

Durability: Isambard's great quest to predict loads for a strength & fatigue analysis
Blog Post

Durability: Isambard's great quest to predict loads for a strength & fatigue analysis

Simcenter 3D Durability with Smart Virtual Sensing! Measure what physical sensors can't, analyze safety factors, and use digital twins to predict future failure