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首页> 外文期刊>The Cryosphere Discussions >Horizontal ice flow impacts the firn structure of Greenland's percolation zone
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Horizontal ice flow impacts the firn structure of Greenland's percolation zone

机译:水平冰流量会影响格陵兰渗滤区的FIRN结构

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One-dimensional simulations of firn evolution neglect horizontal advection from ice flow, which transports the firn column across climate gradients as it is buried by accumulation. Using a suite of model runs, we demonstrate the impacts of horizontal advection on the development of firn density, temperature, and the stratigraphy of melt features through the Greenland ice sheet percolation zone. The simulations isolate processes in synthetic runs and investigate four specific transects and an ice core site. Relative to one-dimensional simulations, the horizontal advection process tends to increase the pore close-off depth, reduce the heat content, and decrease the frequency of melt features with depth by emplacing firn sourced from higher locations under increasingly warm and melt-affected surface conditions. Preservation of the advected pore space and cold content is strongly dependent upon the depth of meltwater infiltration. Horizontal ice flow interacts with topography, climate gradients, and meltwater infiltration to influence the evolution of the firn column structure; the interaction between these variables modulates the impact of horizontal advection on firn at locations around Greenland. Pore close-off and firn temperature are mainly impacted in the lowermost 20–30km of the percolation zone, which may be relevant to migration of the lower percolation zone. Relatively high in the percolation zone, however, the stratigraphy of melt features can have an advection-derived component that should not be conflated with changing climate.
机译:FIRN演化的一维模拟疏忽冰流程横向平流,在累积时横跨气候梯度运输FIRN柱。使用一套模型运行,我们展示了横向平流对熔体密度,温度和熔体特征的地层发展的影响通过格陵兰冰盖渗透区。仿真分离合成运行过程中的过程,并调查四个特定的横断面和冰核。相对于一维模拟,水平的平坦过程倾向于增加孔闭合深度,减少热含量,并通过从越来越温暖和熔体熔体熔体的表面下从更高的位置施加FiRN来降低熔体特征的频率状况。保存的孔隙空间和冷含量强烈依赖于熔融水浸的深度。水平冰流与地形,气候梯度和熔融浸润相互作用,以影响FIRN柱结构的演变;这些变量之间的相互作用调制了水平平流对FIRN在格陵兰岛地区的影响。孔闭合和FIRN温度主要受到渗透区的最低20-30km的影响,这可能与较低渗透区的迁移相关。然而,在渗滤区中相对较高,熔体特征的层层可以具有不应与变化的气候混淆的平流衍生的组分。

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