Articles | Volume 19, issue 4
https://doi.org/10.5194/nhess-19-857-2019
https://doi.org/10.5194/nhess-19-857-2019
Research article
 | 
17 Apr 2019
Research article |  | 17 Apr 2019

Projected changes to extreme freezing precipitation and design ice loads over North America based on a large ensemble of Canadian regional climate model simulations

Dae Il Jeong, Alex J. Cannon, and Xuebin Zhang

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Cited articles

Armenakis, C. and Nirupama, N.: Urban impacts of ice storms: Toronto December 2013, Nat. Hazards, 74, 1291–1298, 2014. 
Arora, V. K., Scinocca, J. F., Boer, G. J., Christian, J. R., Denman, K. L., Flato, G. M., Kharin, V. V., Lee, W. G., and Merryfield, W. J.: Carbon emission limits required to satisfy future representative concentration pathways of greenhouse gases, Geophys. Res. Lett., 38, L05805, https://doi.org/10.1029/2010GL046270, 2011. 
ASCE (American Society of Civil Engineers): Minimum Design Loads for Buildings and Other Structures, ASCE Standard 7-02, ASCE, Reston, VA, 2006. 
Baldwin, E. and Contorno, S.: Development of a weather-type prediction system for NMC's mesoscale ETA model, Preprints, 13th conference on weather analysis and forecasting American Meteor. Society, Vienna, VA, 86–87, 1993. 
Bourgouin, P.: A method to determine precipitation types, Weather Forecast., 15, 583–592, 2000. 
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Short summary
Atmospheric ice accretion caused by freezing precipitation leads to severe damage and failure of buildings and infrastructure. This study investigates projected changes to extreme ice loads used to design infrastructure over North America for future periods of specified global mean temperature change using a Canadian regional climate model. Increases in ice accretion for latitudes higher than 40° N are substantial and would have clear implications for future building and infrastructure design.
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