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Simulation of sprinkler—hot layer interaction using a field model
Wan Ki Chow
, Y. L. Cheung
The Hong Kong Polytechnic University
Research output
:
Journal article publication
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Journal article
›
Academic research
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peer-review
43
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Dive into the research topics of 'Simulation of sprinkler—hot layer interaction using a field model'. Together they form a unique fingerprint.
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Keyphrases
Airflow
66%
Concentration Field
33%
Conservation Equations
33%
Convective Cooling
33%
Empirical Expression
33%
Equations of Motion
33%
Field Model
100%
Floor Level
33%
Flow Concentration
33%
Flow Effect
33%
Gas Flow Temperature
33%
Gas Phase
66%
Gasses
33%
Heat Transfer
33%
Initial Radius
33%
Initial Velocity
33%
Interaction Effect
33%
Interlayer Interaction
100%
Liquid Phase
66%
Macroscopic Parameters
33%
Mean Droplet Diameter
33%
Modeling Techniques
33%
Nozzle
33%
Smoke Concentration
33%
Smoke Layer
33%
Smoke Layer Height
33%
Source Term
33%
Sprinkler
66%
Temperature Concentration
33%
Test Room
33%
Water Density
33%
Water Droplet
66%
Water Flow
33%
Water Pressure
33%
Water Spray
100%
Engineering
Air Flow
66%
Concentration Field
33%
Conservation Equation
33%
Convective
33%
Droplet Size
33%
Equations for Mass
33%
Field Model
100%
Floor Level
33%
Flow Rate
33%
Flow Velocity
33%
Gas Flow
33%
Gas-Phase
66%
Initial Velocity
33%
Interaction Effect
33%
Layer Interaction
100%
Layer Interface
33%
Liquid Phase
66%
Predicted Result
33%
Source Term
33%
Spray Water
100%
Physics
Water Pressure
50%