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Energy storage in unsaturated soil using pore air flow
Ahti Eerikäinen
, Matti Ettala
, Markku Kangas
, Terhi Kling
, Peter Lund
, Auli Niemi
, Kaj Winqvist
Research output
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Book/Report
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Report
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Keyphrases
Air Injection
25%
Air-raid Shelters
25%
Air-to-ground
25%
Airflow
100%
Ambient Air
25%
Ambient Temperature
25%
Convection
25%
Coupled Flow
25%
Coupled Transport
25%
Energy Flux
25%
Energy Storage
100%
Finland
25%
Fluid Flow
25%
Gas Phase
25%
Greenhouse
25%
Heat Storage
25%
Heat Store
25%
Heat Transfer
25%
Hypothetical Situation
25%
In(III)
25%
Indoor Air
25%
Injection Flow Rate
25%
Lawn
25%
Liquid Phase
25%
Microcomputer
50%
Mineral Grain
50%
Multi-component Model
25%
Natural Conditions
25%
Natural Heat
25%
Natural Temperature
25%
Numerical Simulation
25%
Porosity
25%
Porous Media
25%
Pressure Difference
25%
Radius of Influence
25%
Sandy Soil
25%
Saturated Porous Media
25%
Snow
25%
Snow Cover
25%
Solar Energy
25%
Solute
25%
Southern Finland
25%
Sports Grounds
25%
Subzero Temperature
25%
Temperature Data
25%
Temperature Distribution
25%
Unsaturated Soil
100%
Unsaturated Zone
25%
Water Table
25%
Winter Season
25%
INIS
accuracy
7%
air
100%
air flow
100%
ambient temperature
7%
availability
7%
comparative evaluations
14%
compatibility
7%
computerized simulation
7%
convection
7%
data
14%
depth
7%
efficiency
7%
energy
7%
energy storage
100%
experimental data
7%
finland
14%
flow rate
7%
fluids
7%
gases
7%
greenhouses
7%
heat
42%
heat storage
7%
heat transfer
7%
houses
7%
indoors
7%
industry
7%
injection
21%
liquids
7%
meters
7%
microcomputers
14%
minerals
14%
porosity
7%
porous materials
14%
pumping
14%
shelters
7%
simulation
21%
snow
14%
soils
100%
solar energy
7%
solutes
7%
temperature distribution
7%
transport
7%
volume
14%
water
7%
water tables
7%
zones
7%
Engineering
Air Flow
100%
Ambient Air
33%
Energy Flux
33%
Energy Storage
100%
Flow Rate
33%
Flow Velocity
33%
Gas-Phase
33%
Heat Storage
33%
Indoor Air
33%
Liquid Phase
33%
Porosity
33%
Pressure Difference
33%
Solar Energy
33%
Surrounding Air
33%
Temperature Data
33%
Temperature Distribution
33%