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Physics / Physical quantities / Soil / Land management / Thermodynamics / Thermal conductivity / R-value / Properties of water / Snow / Chemistry / Heat transfer / Mechanical engineering


Hydrology Earth System Sciences, 8(4), 706–K. Rankinen,and T. Karvonen
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Document Date: 2014-12-04 02:05:28


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File Size: 1,51 MB

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City

Helsinki / Reading / Stockholm / /

Country

United Kingdom / Finland / /

/

Facility

University of Reading / Sodankylä Observatory / Helsinki University of Technology / Finnish Environment Institute / Observation Station / Jokioinen Observatory / Finnish Meteorological Institute / Royal Institute of Technolgy / Kuopio Airport / Oulu Airport / Laboratory of Water Resources / /

IndustryTerm

automatic equipment / soil-plant-atmosphere systems / numerical solution / energy / /

Organization

Department of Geography / Royal Institute of Technolgy / Finnish Meteorological Institute / University of Reading / Aquatic Environments Research Centre / European Union / Parameter Unit / Finnish Environment Institute / Laboratory of Water Resources / Stanford / Helsinki University of Technology / /

Position

heat and mass transfer model for soil-plant-atmosphere systems / corresponding author / /

Product

R2 / /

Technology

Environmental Engineering / simulation / oC-1 / pdf / Dav / /

URL

www.lwr.kth.se/CoupModel / www.water.hut.fi/wr/kurssit / /

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