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Using Computational Fluid Dynamics to Evaluate High Tunnel Roof Vent Designs
David C. Lewus,
Arend Jan Both
School of Environmental and Biological Sciences, Environmental Science
Research output
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peer-review
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Dive into the research topics of 'Using Computational Fluid Dynamics to Evaluate High Tunnel Roof Vent Designs'. Together they form a unique fingerprint.
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Engineering & Materials Science
Vents
100%
Roofs
78%
Tunnels
68%
Computational fluid dynamics
61%
Ventilation
48%
Plastic films
29%
Humidity control
29%
Air
28%
Temperature
20%
Film growth
16%
Greenhouses
12%
Crops
11%
Temperature control
9%
Software packages
9%
Mean square error
9%
Rocks
8%
Education
8%
Dynamic models
8%
Radiation
8%
Flow rate
7%
Computer simulation
5%
Costs
3%
Agriculture & Biology
fluid mechanics
77%
air temperature
45%
plastic film
40%
humidity
28%
natural ventilation
23%
research facilities
23%
temperature
19%
dynamic models
19%
wind speed
18%
air flow
17%
education
16%
rocks
15%
weather
14%
greenhouses
11%
summer
10%
air
10%
crops
8%
Medicine & Life Sciences
Hydrodynamics
95%
Ventilation
61%
Temperature
59%
Air
55%
Humidity
32%
Plastics
26%
Weather
17%
Software
10%
Radiation
10%
Technology
9%
Education
8%
Costs and Cost Analysis
8%