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Evaluation of threshold freezing conditions for winter road construction over discontinuous permafrost peatlands, subarctic Canada

机译:评估不连续多年冻土泥炭地冬季道路建设的极限冻结条件,加拿大亚北极

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Winter roads provide an important transportation service in northern regions. The Tibbitt to Contwoyto Winter Road (TCWR), traversing subarctic Canada, is the busiest heavy-haul road in the world with as many as 10,900 truckloads per season. In addition to lake-ice thickness, trafficability on the TCWR depends upon adequate freezeback of overland portages, which are primarily peatlands underlain by discontinuous permafrost. We investigate threshold requirements for the initiation of winter road operations in this region and assess the use of a recommended 305 degrees C-day air-freezing index (FDD305a) value as an operational predictor of ground freezing at 30 cm depth, the desired depth to allow winter road construction to commence. Snow compaction and flooding were found to enhance freezeback of portages with early winter overland flow having a similar effect. The majority of winter road portages were not adequately frozen to a depth of 30 cm by FDD305a. Our results indicate that for drained and wet peatlands in this discontinuous permafrost environment, an FDD a threshold of 1100 degrees Cdays is more appropriate than the 305 degrees C-day threshold. However, TCWR winter road operators presently plan the construction of the winter road by a calendar date rather than by evaluation of the air-freezing index. This practice results in a conservative approach to the start of the construction season, close to 1100 degrees C-days with a higher percentage of sites frozen to 30 cm depth than would be if the 305 degrees C-day air-freezing index was used as a guideline. In addition, the use of low-pressure vehicles for snow compaction during the start of the construction season is an effective adaptation practice to accelerate freezing penetration.
机译:冬季道路在北部地区提供重要的运输服务。 Tibbitt到Contwoyto冬季公路(TCWR)穿越加拿大的北极地区,是世界上最繁忙的重载公路,每个季节的载货量高达10,900辆。除湖冰厚度外,TCWR上的可通行性还取决于陆路运输的适当回冻,陆路运输主要是由于不连续多年冻土而形成的泥炭地。我们调查了该地区冬季道路运营开始的阈值要求,并评估了建议的305摄氏度C-天空气冻结指数(FDD305a)值作为30 cm深度(理想深度为30厘米)的地面冻结的运行预测指标的使用允许冬季道路建设开始。人们发现,积雪压实和洪水会增强门户的回冻,冬季初的陆上水流也有类似的效果。 FDD305a未能将大多数冬季道路运输工具充分冻结到30厘米的深度。我们的结果表明,对于这种不连续的多年冻土环境中的排水和湿的泥炭地,FDD阈值为1100 Cday比305 C-day阈值更为合适。但是,TCWR冬季道路运营商目前是通过日历日期而不是通过评估空气冻结指数来规划冬季道路的建设。这种做法导致在施工季节开始时采取了一种保守的方法,接近1100摄氏度的天,与使用305摄氏度的天冰冻指数作为基准相比,冻结到30厘米深度的场所所占的百分比更高一个准则。此外,在施工季节开始时使用低压车辆压实雪是加速冻结渗透的有效适应措施。

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