scientific article; zbMATH DE number 1067013
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Publication:4357928
DOI<937::AID-FLD465>3.0.CO;2-R 10.1002/(SICI)1097-0363(19961115)23:9<937::AID-FLD465>3.0.CO;2-RzbMath0890.76063MaRDI QIDQ4357928
Magdeleine Normandin, Jean-Robert Clermont
Publication date: 14 July 1998
Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.
conservation equationsjet surfacefree surface determinationinner stream surfaceLevenberg/Marquatdt optimization algorithmperipheral stream tube
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Three-dimensional non-Newtonian computations of extrudate swell with the finite element method ⋮ Fully‐developed flow and temperature calculations for rheologically complex materials using a mapped circular domain
Cites Work
- Three dimensional viscous flows with a free surface: Flow out of a long square die
- Calculation of main flows of a memory-integral fluid in an axisymmetric contraction at high Weissenberg numbers
- Numerical simulation of three-dimensional duct flows of incompressible fluids by using the stream-tube method. I: Newtonian equation
- Numerical simulation of extrudate swell for Oldroyd-B fluids using the stream-tube analysis and a streamline approximation
- Analysis of plane and axisymmetric flows of incompressible fluids with the stream tube method: Numerical simulation by trust-region optimization algorithm
- Transient finite element method for calculating steady state three-dimensional free surfaces
- Prediction of three-dimensional general shape extrudates by an implicit iterative scheme
- Die design: An implicit formulation for the inverse problem
- Calculation of fully developed flows of complex fluids in pipes of arbitrary shape, using a mapped circular domain
- Numerical simulation of complex flows of non‐Newtonian fluids using the stream tube method and memory integral constitutive equations
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