About us
Espace utilisateur
Education
INSTN offers more than 40 diplomas from operator level to post-graduate degree level. 30% of our students are international students.
Professionnal development
Professionnal development
Find a training course
INSTN delivers off-the-self or tailor-made training courses to support the operational excellence of your talents.
Human capital solutions
At INSTN, we are committed to providing our partners with the best human capital solutions to develop and deliver safe & sustainable projects.
Thesis
Home   /   Thesis   /   Fragmentation of a liquid sheet subjected to a strong initial velocity gradient

Fragmentation of a liquid sheet subjected to a strong initial velocity gradient

Engineering sciences Mathematics - Numerical analysis - Simulation Thermal energy, combustion, flows

Abstract

When a shock wave reflects off the free surface of a metal sample, it interacts with geometric irregularities (treated as defects such as those caused by a machining tool). At sufficiently high pressures, the shock reflection, followed by the material's expansion into the surrounding medium, can trigger the high-speed ejection (several thousand m/s) of liquid-phase metal sheets from the free surface. These sheets stretch and fragment, creating a particle cloud that can interfere with certain experiments. This process is extremely difficult to characterize experimentally or simulate, as it occurs at challenging spatio-temporal scales and involves material fracture physics that current computational codes based on hydrodynamic equations cannot naturally reproduce.
This thesis aims to address this specific issue. Drawing notably on theoretical analyses, it seeks to incorporate fragmentation processes into simulations where the material, modeled using a continuum (hydrodynamic) approach, is subjected to very high strain rates. One of the objectives is to predict the size distributions of the particles resulting from sheet fragmentation as a function of their velocity and to compare these predictions with available experimental data.

Laboratory

Département physique, expériences et modèles
DPEM
DPEM
IP Paris
Top envelopegraduation-hatlicensebookuserusersmap-markercalendar-fullbubblecrossmenuarrow-down