The Aero Sustainable Vehicle Concept is Inspired by Air and Water
Rose Nazarali — January 17, 2010 — Autos
References: ecofriend.org
The AERO sustainable vehicle concept features three rear wheels and a mid engine. Designed by Cristian Polanco, this eco-friendly two-seater’s exterior was inspired by air and water.
The body of the AERO sustainable vehicle concept is made from compressed polymers, which is a lightweight, recyclable material. This car generates its own energy through wind power, solar panels and a battery pack. AERO is able to travel at high speeds while only consuming a small amount of the energy it generates.
The body of the AERO sustainable vehicle concept is made from compressed polymers, which is a lightweight, recyclable material. This car generates its own energy through wind power, solar panels and a battery pack. AERO is able to travel at high speeds while only consuming a small amount of the energy it generates.
Trend Themes
1. Eco-friendly Vehicles - Disruptive innovation opportunity: Develop vehicles that generate their own energy through renewable sources such as wind and solar power, while using lightweight and recyclable materials.
2. Rear-wheel Vehicles - Disruptive innovation opportunity: Design vehicles with three rear wheels and a mid engine for enhanced stability and efficiency.
3. Compressed Polymers - Disruptive innovation opportunity: Explore the use of lightweight and recyclable compressed polymers for car bodies to reduce environmental impact.
Industry Implications
1. Automotive - Disruptive innovation opportunity: Create sustainable vehicles that incorporate renewable energy sources and utilize lightweight materials.
2. Renewable Energy - Disruptive innovation opportunity: Develop technologies and systems that enable vehicles to generate their own energy through wind power and solar panels.
3. Materials Science - Disruptive innovation opportunity: Advance the research and development of lightweight and recyclable materials, such as compressed polymers, for use in automotive applications.
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