Load calculations play an essential role in the certification
process for civil aircraft. It links the aircraft's general – architectural
– specification to structural dimensioning, a term to be taken in
its broadest sense. Structural design is fundamentally conditioned
by "classical" mechanical loads: external aerodynamics (maneuvering,
gust, turbulence), internal in-flight loads (pressurization, interfaces,
thermal loads) and ground loads (dynamic landing, taxiing). Contemporary
calculations also incorporate loads due to the integration of systems
into structures, and the dynamic effects of electric flight controls.
In this context, it is first essential to address the fundamental
elements of regulations, derived from extensive experience in civil
aviation, to ensure robust calculation of the envelope of loads inflight
– defined by the flight domain – allowing qualification of structures
for static loading and lift-related fatigue.
This is the purpose of this article, which sets out the general
process and definitions related to regulations. Starting from the
general framework of civil certification, the stochastic definition
of limit and extreme loads leads to the concept of fail-safe structure.
The parameters defining an aircraft's flight domain are reviewed,
leading to the definition of the three standard domains associated
with maneuver and gust cases. These elements are decisive for the
dimensioning of the aircraft's primary structures: load-bearing surfaces
and interfaces with the rest of the airframe.