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The granular thermal behaviour in a vibrated bed
Shu San Hsiau
, Li Tsung Sheng, Shao Li Chiu
機械工程學系
研究成果
:
雜誌貢獻
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會議論文
›
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深入研究「The granular thermal behaviour in a vibrated bed」主題。共同形成了獨特的指紋。
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Keyphrases
Thermal Behavior
100%
Vibrated Bed
100%
Granular Systems
83%
Effective Thermal Diffusivity
83%
Vibrated Granular Bed
66%
Granular Materials
50%
Granular Bed
50%
Shaker
50%
Fluctuant
50%
Self-diffusion Coefficient
33%
Thermal Conduction
33%
Self-diffusion
33%
Conduction Behavior
33%
Physical Properties
16%
Image Processing System
16%
High-speed Camera
16%
Network Model
16%
Temperature Distribution
16%
Particle Tracking
16%
Kinetic Theory
16%
Temperature Variation
16%
Time Derivative
16%
Interparticle Interactions
16%
Power Amplifier
16%
Accelerometer
16%
Thermal Properties
16%
Inverse Approach
16%
Oscilloscope
16%
Effective Thermal Conductivity
16%
Effective Conductivity
16%
Heater
16%
Vibrational Acceleration
16%
Thermal Diffusivity
16%
Vibrational Frequencies
16%
Heat Equation
16%
Dry Granular Material
16%
Smoothed Data
16%
Inverse Algorithm
16%
Nominal Diameter
16%
Inverse Heat Conduction Problem
16%
Sinusoidal Signal
16%
Transient Solution
16%
Granular pile
16%
Contact Structure
16%
Contact Network
16%
Thermal Heat
16%
Vibrational Systems
16%
Mass Diffusion
16%
Transient Heat Conduction Equation
16%
Smoothing Filter
16%
Thermal Diffusion
16%
Aluminum Particles
16%
Function Generator
16%
Thermal Material Properties
16%
Constant Heat Flux
16%
Bulk Properties
16%
Engineering
Granular Bed
100%
Thermal Behavior
100%
Thermal Diffusivity
85%
Transients
42%
Diffusion Coefficient
28%
Network Model
14%
Theoretical Study
14%
Image Processing
14%
Processing System
14%
Speed Camera
14%
Particle Tracking Method
14%
Power Amplifier
14%
Oscilloscope
14%
Effective Thermal Conductivity
14%
Bulk Property
14%
Particle Contact
14%
Heat Conduction Equation
14%
Front View
14%
Heat Conduction Problem
14%
Constant Heat Flux
14%
Nominal Diameter
14%
Granular Pile
14%
Sinusoidal Signal
14%
Thermal Diffusion
14%
Temperature Distribution
14%
Chemical Engineering
Thermal Diffusivity
100%
Heat Conduction
33%
Heat Flux
16%
Thermal Conductivity
16%
Temperature Distribution
16%
Thermal Diffusion
16%