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Mixing by stirring: Optimizing shapes and strategies
Maximilian F. Eggl,
Peter J. Schmid
Physical Sciences and Engineering
Mechanical Engineering
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Earth and Planetary Sciences
Binary Fluid
100%
Stirring
100%
Augmentation
75%
Strategy
50%
Shape
50%
Efficiency
50%
Protocol
50%
Diffusion
25%
Hydrodynamics
25%
Energy Budget
25%
Homogeneity
25%
Vortex Shedding
25%
Target
25%
Mixture
25%
Gradient
25%
Time
25%
Revision
25%
Horizon
25%
Optimization
25%
Economics
25%
Input
25%
Mixing
25%
Ingredient
25%
Engineering
Enhancement
75%
Efficiency
50%
Fluid
50%
Optimization
25%
Optimization Approach
25%
Final Product
25%
Sectional Shape
25%
Mixture
25%
Diffusion
25%
Economics
25%
Chemistry
Diffusion
25%
Filament
25%
Hydrodynamics
25%
Homogeneity
25%
Procedure
25%
Mixture
25%
Time
25%
Modification
25%
Energy
25%
Optimization
25%
Setting
25%
Mixing
25%
Physics
Shapes
50%
Diffusivity
25%
Hydrodynamics
25%
Homogeneity
25%
Mixtures
25%
Gradients
25%
Revisions
25%
Targets
25%
Optimization
25%
Mixing
25%
Chemical Engineering
Diffusion
25%
Constrained Optimization
25%
Mixing
25%