Moving Shape Analysis and Control: Applications to Fluid Structure Interactions provides a mathematical analysis of problems related to the evolution of domains. The authors address real-world engineering with applications to situations such as free surface flows, phase changes, fracture and contact problems, and fluid interaction problems in industrial settings such as civil transport vehicles. They emphasize the Eulerian approach using evolution and derivation tools for controlling fluids and systems. The book includes chapters devoted to fluid control described using Navier-Stokes equations and features new approaches to deal with boundary control fluid-structure interaction systems.
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