Aerospace engineering is the branch of engineering concerning aircraft, spacecraft and related topics. It is often called aeronautical engineering, particularly when referring solely to aircraft, and astronautical engineering, when referring to spacecraft. Some of the elements of aerospace engineering are:
Control or Flight Dynamics - the study of maneuvering vehicles to achieve the desired position and attitude (that is, which way the vehicle is pointing) (see also Astrodynamics)
Structures - design of the physical configuration of the craft to withstand the forces encountered during flight. Aerospace engineering aims very much at keeping structures lightweight.
Materials - related to structures, aerospace engineering also studies the materials of which the aerospace structures are to be built. New materials with very specific properties are invented, or existing ones are modified to improve their performance.
Aeroelasticity - the interaction of aerodynamic forces and structural flexibility, potentially causing flutter, divergence, etc
The basis of most of these elements lies in theoretical mathematics, such as fluid dynamics for aerodynamics or the equations of motion for flight dynamics. However, there is also a large empirical component. Historically, this empirical component was derived from testing of scale models and prototypes, either in wind tunnels or in the free atmosphere. More recently, advances in computing have enabled the use of computational fluid dynamics to simulate the behavior of fluid, reducing time and expense spent on wind_tunnel testing.
Additionally, aerospace engineering addresses the integration of all components that constitute an aerospace vehicle (subsystems including power, communications, thermal control, life support, etc.) and its life cycle (design, temperature, pressure, radiation, velocity, life time...), leading to extraordinary challenges and solutions specific to the domain of aerospace systems engineering.
Aerospace engineering is the branch of engineering concerning aircraft, spacecraft and related topics.
It is often called aeronautical engineering, particularly when referring solely to aircraft, and astronauticalengineering, when referring to spacecraft.
Additionally, aerospace engineering addresses the integration of all components that constitute an aerospace vehicle (subsystems including power, communications, thermal control, life support, etc.) and its life cycle (design, temperature, pressure, radiation, velocity, life time...), leading to extraordinary challenges and solutions specific to the domain of aerospace systems engineering.
The Department of Aerospace Engineering (AE) at the University of Illinois at Urbana-Champaign is an international leader in aerospace science and engineering.
We are proud of our excellence in the fundamental engineering sciences that form the foundation of aerospace as well as its application to many of the important problems and challenges that confront the aerospace industry today.
Research in Aerospace Engineering is both basic and applied, contributing fundamental knowledge and applying that knowledge to aircraft and space applications.