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- W56280907 abstract "Snow, ice, and slush runway conditions significantly impact aircraft landing and takeoff safety. Although airport operators do an excellent job in maintaining runway safety during winter conditions, snow removal is costly. Snow removal typically entails plowing and chemical treatment. Conversely, this article presents an alternative approach through preventing any snow/ice accumulation on the runway by maintaining the runway slab surface at an above freezing temperature. An anti-ice runway slab is developed in this article by supplying direct current energy from a photovoltaic energy system to a conductive concrete pavement overlay. A test slab constructed at the University of Arkansas’ Engineering Research Center is used to substantiate the methodology and preliminary results are documented in this article. The test slab will be monitored for ambient and internal temperature throughout the 2011-2012 winter season. Additionally, a numerical model is being formulated to investigate temperature distribution throughout the conductive concrete overlay mat. The numerical model will serve as a useful tool in understanding mat temperature distribution and for preliminary sizing of the energy system as a function of ambient condition scenarios." @default.
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- W56280907 date "2012-01-01" @default.
- W56280907 modified "2023-09-26" @default.
- W56280907 title "Developing Anti-icing Airfield Runways Using Solar Energy and Conductive Concrete" @default.
- W56280907 hasPublicationYear "2012" @default.
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