Engineering
Hemocompatibility
100%
Computational Fluid Dynamics
91%
Magnetic Levitation
64%
Bearing Design
43%
Objective Function
32%
Design Optimization
32%
Learning System
32%
Impeller
32%
Surrogate Model
21%
Blades Design
21%
Diffusers
21%
Flow Velocity
21%
Flow Rate
21%
Blood Pump
19%
Magnetic Bearing
19%
Implant
16%
Energy Engineering
16%
Design Basis
16%
Design Point
16%
Protein Concentration
16%
Optimal Design
16%
Transients
16%
Hydrodynamic Performance
16%
Joints (Structural Components)
16%
Bearing System
16%
Lumped Parameter
16%
Good Agreement
16%
Dynamic Models
16%
Axial Flow
16%
Rotors
14%
Blade Geometry
10%
Chord Length
10%
Wear (Damage)
10%
Bearing Measurement
10%
Field Model
10%
Fluid Flow
10%
Experimental Measurement
10%
Axial Force
10%
Component Device
10%
Flow Curve
10%
Multiobjective Optimization
10%
Optimization Method
10%
Genetic Algorithm
10%
Pressure Flow
10%
Individual Component
9%
Pump Design
8%
Experimental Result
8%
Direct Current Motor
6%
Drive System
6%
Lubrication
5%
Material Science
Computational Fluid Dynamics
81%
Left Ventricular Assist Device
35%
Lubrication
32%
Hydrodynamics
27%
Film Thickness
21%
Mixed Lubrication
16%
Wear of Materials
16%
Magnetic Bearing
16%
Dynamic Analysis
16%
Fluid Flow
16%
Hemoglobins
8%
Viscosity
5%
Boundary Lubrication
5%
Axial Flow
5%
Tribological Performance
5%
Elastohydrodynamic Lubrication
5%
Vortex
5%
Surrogate Modeling
5%
Differential Pressure
5%