Keyphrases
Lattice Boltzmann Model
71%
Lattice Boltzmann Method
65%
Lattice Boltzmann
52%
Numerical Results
31%
Bhatnagar-Gross-Krook
29%
Flow Transferring
28%
Fluid Flow
27%
Gas Flow
26%
Lithium-ion Battery
25%
Electroosmotic Flow
25%
Heat Transfer
25%
Thermal Management Design
21%
Ludwig Boltzmann
20%
Battery Thermal Management
19%
Phase Change Material
19%
Spray Cooling
19%
Porous Media
18%
Numerical Simulation
18%
Quadrature
17%
Microfluidic Device
15%
Light Wavelength
13%
Heat pipe
13%
Knudsen number
13%
Photosynthetic Bacteria
12%
Nanochannel
12%
Nanoscale Flow
12%
Bacterial Biofilm
12%
Liquid Droplet
12%
Carbon Nanotubes
12%
Liquid-vapor Flow
12%
Thermoelectric Generator
12%
Couette Flow
12%
Analytical Solution
11%
Double Distribution Function
11%
Nanometer Scale
10%
Slip Length
10%
Lattice Boltzmann Equation
10%
Fluid Systems
10%
Kinetic Model
10%
Solid Wall
10%
Room Temperature
10%
Electric Double Layer
9%
Building Energy Consumption
9%
Data-driven Approach
9%
Building Classification
9%
Velocity Slip
9%
Capillary Tube
9%
Nanoconfined Fluid
9%
Design Basis
9%
Thermal Contact Resistance
9%
Engineering
Boltzmann Equation
100%
Lattice-Boltzmann Method
66%
Lattice Boltzmann Model
34%
Nanoscale
29%
Microscale
28%
Computer Simulation
28%
Fluid Flow
26%
Energy Engineering
25%
Lithium-Ion Batteries
25%
Electroosmotic Flow
25%
Gas Flow
23%
Hydrogen Production
22%
Battery Thermal Management System
19%
Phase Change Material
19%
Oscillatory
18%
Nanometre
18%
Couette Flow
16%
Microchannel
14%
Heat Pipes
14%
Battery (Electrochemical Energy Engineering)
13%
Liquid Droplet
12%
Nanoscale Flow
12%
Bacterial Biofilm
12%
Flow in Porous Medium
12%
Thermoelectrics
12%
Microfluidic Device
12%
Flow Rate
12%
Boundary Condition
11%
Knudsen Number
9%
Energy Building
9%
Capillary Tube
9%
Kinetic Model
9%
Good Agreement
9%
Solid Wall
9%
Pressure Gradient
8%
Fluid System
8%
Relaxation Time
8%
Two-Phase Flow
8%
Separate Phase
8%
Macroscale
8%
Energy Surface
8%
Slip Velocity
8%
Substrate Concentration
8%
Electric Double Layer
8%
Equilibrium Shape
8%
Predicted Result
8%
Gauss
8%
Elementary Volume
7%
Heat Losses
7%
Numerical Study
7%