Masten Space Systems: Reactive flow and heat transfer optimisation for reusable spacecraft

Masten Space Systems is using Fidelity Flow Solver, Cadence’s unstructured multi-purpose CFD solver package – for the design and analysis of various elements of reusable spacecraft and lunar vehicles.
ANF Generic Missile – from subsonic to high supersonic

From Mach 0.5 to 5.0: a comparison of CFD to wind tunnel and free flight tests on the ANF, a generic missile, investigating grid dependency and numerical schemes.
An electrified RIVA Powerboat – Optimised

This paper investigates the hydrodynamic performance of a classic wooden powerboat, the RIVA Junior, using CFD and driven by an environmentally friendly electric motor.
Validation of Wind Loads on a Slender Vessel Using CFD

DAMEN and Cadence are developing a CFD methodology to demonstrate a vessel has sufficient transversal stability to resist over-rolling in severe side winds.
Reducing fuel usage with ship trim optimisation

Ship trim optimization has recently gained enormous momentum in the field of naval architecture. See how the unique features of Fidelity Marine contributed to obtaining a database of optimal trim angles quickly and with high accuracy.
An interview with Damen Shipyards

Damen Shipyards Is Building Ships and Making Waves with Cadence CFD and Cloud Solutions
INEOS Britannia: Designing for Race-Winning Speed

With Fidelity Fine Marine CFD, we are developing solutions to achieve top speed in the America’s Cup
Prediction of the resistance curve of a planing hull Fidelity Marine Marintek

For the prediction of the resistance curve of a planing hull and validation against model tests, Marintek used Fidelity Marine and Hexpress in this user case.
Extending quadcopter drone flight time and range with Fidelity CFD simulation

aerodynamic simulation and optimisation of an industrial quadcopter drone (UAV) in hover mode, the most energy intensive mode of this type of drone.
Prediction of the unsteady Flow

Developing a workflow for accurate, reliable and affordable prediction of forced response vibrations in radial turbines, taking into account mistuning effects.