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Bálint, Ágnes
Nagy, Norbert
Wang, Xuechu
Mészáros, Csaba
Horváth, Csaba
2026-07-02T13:21:07Z
2026-07-02T13:21:07Z
2026
http://hdl.handle.net/20.500.14044/39440
The soil’s water and energy balance play a fundamental role in regulating the hydrological cycle and near-surface climatic conditions. Previous studies have demonstrated that coupled heat and moisture transport processes strongly affect soil evaporation and temperature dynamics. Building on this foundation, our study investigated the drying behaviour of soil columns exposed to infrared radiation simulating solar energy, with particular focus on heat and mass transfer at the soil-air interface. Laboratory experiments were performed on soil samples of different initial moisture conditions, including natural, water-saturated, and frozen states. Each experiment involved 12 hours of infrared exposure followed by 12 hours without irradiation, forming a 48-hour day–night cycle. Temperature and moisture content were measured at three depths, while surface temperature patterns and airflow dynamics were monitored with an infrared camera. Results showed pronounced temperature fluctuations and moisture loss in the upper soil layers. Infrared imagery clearly revealed convective airflows forming above the soil columns during heating. The experimental setup proved effective for analysing coupled heat and moisture transport. These findings enhance understanding of soil evaporation mechanisms and contribute to the development of sustainable soil–water management strategies.hu_HU
dc.formatPDFhu_HU
enhu_HU
Soil drying and heat–moisture dynamics under simulated solar radiation using infrared energyhu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
2026hu_HU
Budapesthu_HU
Rejtő Sándor Könnyűipari és Környezetmérnöki Karhu_HU
Óbudai Egyetemhu_HU
Természettudományok - környezettudományokhu_HU
convective boundary layerhu_HU
environmental sustainabilityhu_HU
heat and mass transporthu_HU
infraredinduced soil dryinghu_HU
soil–atmosphere interactionshu_HU
Konferenciaközleményhu_HU
Scientific, Technical and Art Releases – 2026hu_HU
local.tempfieldCollectionsKönyvrészletekhu_HU
Koltai, László
10.12700/STAR.2026.142
16.hu_HU
Kiadói változathu_HU
19 p.hu_HU
Scientific, Technical and Art Releases – 2026hu_HU
2026
2786-3638hu_HU
2026hu_HU
Óbudai Egyetemhu_HU
Budapesthu_HU


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