Jakobsen, Hugo A. 1965-
Jakobsen, Hugo A.
VIAF ID: 313447647 ( Personal )
Permalink: http://viaf.org/viaf/313447647
Preferred Forms
- 200 _ | ‡a Jakobsen ‡b Hugo A.
- 100 1 _ ‡a Jakobsen, Hugo A.
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- 100 1 _ ‡a Jakobsen, Hugo A.
- 100 1 _ ‡a Jakobsen, Hugo A.
- 100 1 _ ‡a Jakobsen, Hugo A. ‡d 1965-
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4xx's: Alternate Name Forms (4)
5xx's: Related Names (1)
Works
Title | Sources |
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2D simulations of bubbling gas-solid fluidized bed reactors | |
CFD modelling of CO₂ capture in the SE-SMR process in the fluidized bed reactors | |
Chemical reactor modeling : multiphase reactive flows | |
A Coalescence and breakup module for implementation in CFD-codes | |
Droplet size distribution after liquid entrainment in horizontal stratified two-phase three-field dispersed flow | |
Droplet-surface impact at high pressures | |
Experimental studies and modeling of a fixed bed reactor for Fischer-Tropsch synthesis using biosyngas | |
Finite-difference stable stencils based on least-square quadric fitting | |
hp-adaptive least squares spectral element method for population balance equations | |
Identification of droplet breakage kernel for population balance modelling | |
The Interaction between mass transfer effects and morphology in heterogeneous olefin polymerization | |
Interaction between reaction kinetics and flow structure in bubble column reactors | |
The kernel effect in the population balance equation | |
Liquid entrainment from a wetted wire exposed to a high gas flow rate in cross flow | |
Mathematical framework for higher order breakage scenarios | |
Measurement techniques and data interpretations for validating CFD multi phase reactor models | |
A model for turbulent binary breakup of dispersed fluid particles | |
Modeling of bubble column reactors : progress and limitations | |
Modeling of dropletŋdroplet interaction phenomena in gasŋliquid systems for natural gas processing | |
Modeling of gas-liquid mass-transfer limitations in slurry olefin polymerization | |
Modeling of membrane reactor | |
Modeling of multicomponent mass diffusjon in porous spherical pellets : plication to steam methane reforming and methanol synthesis | |
Modeling of vertical bubble-driven flows | |
Multiphysic two-phase flow lattice Boltzmann : droplets with realistic representation of the interface | |
Numerical and experimental investigation of droplet-droplet collisions | |
Numerical diffusion in CFD reactor simulations : a comparative convection algorithm study | |
On the modelling of droplet-film interaction considering entrainment, deposition and breakage processes | |
On the prediction of chemical reacting systems in a bubblecolumn reactor using a two-fluid model | |
A parallel time-space least-squares spectral element solver for incompressible flow problems | |
Parallelization and performance optimization of a dynamic PDE fixed bed reactor model for practical applications | |
Phase distribution phenomena in two-phase bubble column reactors | |
Practical validation of the two-fluid model applied to dense gas-solid flows in fluidized beds | |
Prediction of the evolution of the dispersed phase in bubbly flow problems | |
The quadrature method of moments and its relationship with the method of weighted residuals | |
Scrubber separation-droplet entrainment in high-pressure gas/liquid separation | |
A sensitivity study of the two-fluid model closure parameters (Β, e) determining the main gas-solid flow pattern characteristics | |
Solution of bubble number density with breakage and coalescence in a bubble column by least-squares method | |
Sorption enhanced hydrogen production by steam methane reforming using Li₂ZrO₃ as sorbent : sorption kinetics and reactor simulation | |
Sorption enhanced steam methane reforming process performance and bubbling fluidized bed reactor design analysis by use of a two-fluid model | |
Status of the development of the regional scale photo-chemical multi-layer Eulerian model | |
Theoretical analysis of fluid particle collisions in turbulent flow | |
Transport and deposition calculations of Sulphur and nitrogen compounds in Europe for 1992 in the 50 km grid by use of the multi-layer Eulerian model | |
Using cahn-hilliard mobility to simulate coalescence dynamics |