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- W2316665615 abstract "Remote Monitoring of environmental conditions has become an increasingly popular means of data collection in part due to the advancements of wireless communication equipment. Recently, remote monitoring stations have been used to collect snowpack and weather data, and to detect avalanches along transportation corridors and other areas of interest. The use of remote monitoring stations in major slide paths have helped transportation maintenance crews predict snow stability, determine when to perform avalanche control activities, and detect when a slide has occurred. Certain data collection activities require placement of sensors mounted on a monitoring tower, including Doppler radar, directly in or near the avalanche slide path. This will, in some cases, subject the tower to dynamic avalanche forces, snowpack creep forces, as well as other adverse conditions typical of mountainous terrain of cold weather regions. The design of a monitoring tower to resist these forces presents several engineering challenges. This paper reviews some of the advances in avalanche prediction and detection, and examines the dynamic response of a monitoring tower due to avalanche loading conditions using the Finite Element Analysis approach, including time history analyses. Based on the analysis results, suggestions for future work on avalanche loading and the design criteria of remote monitoring towers are presented. A discussion will be given on the dynamic amplification of the tower system as compared to equivalent static loading, and conclusions will be made on the application of monitoring towers in the cold regions." @default.
- W2316665615 created "2016-06-24" @default.
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- W2316665615 date "2002-05-08" @default.
- W2316665615 modified "2023-09-23" @default.
- W2316665615 title "Dynamic Analysis and Design of a Remote Monitoring Tower Subjected to Avalanche Loading" @default.
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- W2316665615 doi "https://doi.org/10.1061/40621(254)43" @default.
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