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Temporal changes in the slope-scale spatial variability of the shear strength of buried surface hoar layers

机译:地下表层灰层抗剪强度的坡度空间变异性随时间变化

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Determining whether the snowpack is becoming more spatially variable or uniform is important for accurate avalanche forecasts. Greater variability increases uncertainty in extrapolation and prediction. Our results offer a look at the evolution of the spatial variability of shear strength of two buried surface hoar layers in southwestern Montana, USA, over time. We studied the layers from shortly after burial until they were no longer the weakest layer in the snowpack. We selected study sites with planar slopes, uniform ground cover, and wind-sheltered locations. This simplified the comparison of the plots by minimizing initial spatial differences so we could focus on temporal change. Within each site, we sampled four 14 mx 14 m plots with more than 70 shear frame tests in a layout optimized for spatial analysis. At both sites, the layers gained strength at a rate that slowed as the layers aged. Although there was little change in the relative variability, absolute variability increased through time. Temporal change was more pronounced when the layers were younger and were gaining strength more rapidly. Additional tests at one plot suggested a correlation length, or the distance at which test results are related, for shear strength of just a few meters. At the other plot, the surface hoar layer collapsed during the initial sample. An initial dramatic decrease in shear strength occurred after this collapse followed by strengthening during that day and into the following day. Though we measured increasing absolute variability through time, uncovering changes in our other measures of spatial variability proved elusive. Developing methods and techniques for adequately characterizing variability, and temporal changes in that variability, will continue to be challenging.
机译:确定雪堆的空间变化性或均匀性对于准确的雪崩预报很重要。较大的可变性会增加推断和预测的不确定性。我们的结果提供了随着时间的推移,美国西南蒙大拿州的两个地下表面灰白层的剪切强度的空间变异性的演变。我们研究了从埋葬后不久到不再是积雪中最薄弱的层的各层。我们选择了具有平坦坡度,均匀地面覆盖和避风的位置的研究地点。这通过最小化初始空间差异简化了图的比较,因此我们可以专注于时间变化。在每个站点内,我们在针对空间分析进行了优化的布局中,通过70多个剪切框架测试对四个14 mx 14 m的地块进行了采样。在这两个位置,层的强度均随着层的老化而降低。尽管相对变异性几乎没有变化,但绝对变异性随时间增加。当这些层更年轻并且获得更快的强度时,时间变化更为明显。对于一个几米的剪切强度,在一个图上进行的其他测试表明相关长度或测试结果相关的距离。在另一幅图上,初始样品期间表面灰白层塌陷。在这种坍塌之后,剪切强度发生了最初的显着下降,随后在当天和第二天逐渐增强。尽管我们测量了随着时间推移而增加的绝对可变性,但发现我们其他空间可变性度量的变化却难以捉摸。开发用于充分表征变异性以及该变异性随时间变化的方法和技术将继续具有挑战性。

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