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pro vyhledávání: '"Udo Lantermann"'
For a representative large modern containership, the effects of a deck container arrangement on the wind-induced loads were systematically investigated using physical model tests and numerical computations. Numerical simulations based on various turb
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Publikováno v:
Applied Ocean Research. 128:103335
Publikováno v:
Wear. :189-201
This paper addresses the prediction of cavitation erosion using a numerical flow solver together with a new erosion model. Numerical flow simulations were conducted with an implicit, pressure-based Euler–Euler multiphase flow solver in combination
The cavitating flow around a ship propeller was simulated with an implicit RANS based flow solver using the Volume of Fluid (VoF) method to model the interface between the two phases. The sliding interface method was applied to simulate the rotation
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Autor:
Udo Lantermann, D. Hänel
Publikováno v:
Computers & Fluids. 36:407-422
A numerical solution concept is presented for simulating the transport and deposition to surfaces of discrete, small (nano-)particles. The motion of single particles is calculated from the Langevin equation by Lagrangian integration under considerati
Publikováno v:
Journal of Physics: Conference Series. 656:012054
The present work aims to predict cavitation erosion using a numerical flow solver together with a new developed erosion model. The erosion model is based on the hypothesis that collapses of single cavitation bubbles near solid boundaries form high ve
Publikováno v:
Scopus-Elsevier
Model-scale measurements and full-scale sea trials were compared to numerical simulations of different ship maneuvers. Simulations were performed using codes that solve the Reynolds-Averaged Navier-Stokes (RANS) equations coupled with the nonlinear r
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