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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Migration of air bubbles in ice under a temperature gradient, with application to 'Snowball Earth'
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Migration of air bubbles in ice under a temperature gradient, with application to 'Snowball Earth'

机译:气泡的迁移在冰下温度梯度,与应用程序“雪球地球”

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To help characterize the albedo of "sea glaciers" on Snowball Earth, a study of the migration rates of air bubbles in freshwater ice under a temperature gradient was carried out in the laboratory. The migration rates of air bubbles in both natural glacier ice and laboratory-grown ice were measured for temperatures between –36℃ and –4℃ and for bubble diameters of 23-2000 μm. The glacier ice was sampled from a depth near close-off (74 m) in the JEMS2 ice core from Summit, Greenland. Migration rates were measured by positioning thick sections of ice on a temperature gradient stage mounted on a microscope inside a freezer laboratory. The maximum and minimum migration rates were 5.45 μm h~(-1) (K cm~(-1))~(-1) at –4℃ and 0.03 μm h~(-1) (K cm~(-1))~(-1) at –36℃. Besides a strong dependence on temperature, migration rates were found to be proportional to bubble size. We think that this is due to the internal air pressure within the bubbles, which may correlate with time since close-off and therefore with bubble size. Migration rates show no significant dependence on bubble shape. Estimates of migration rates computed as a function of bubble depth within sea glaciers indicate that the rates would be low relative to the predicted sublimation rates, such that the ice surface would not lose its air bubbles to net downward migration. It is therefore unlikely that air bubble migration could outrun the advancing sublimation front, transforming glacial ice to a nearly bubble-free ice type, analogous to low-albedo marine ice
机译:为了帮助描述“海洋冰川”的反照率雪球地球,迁移率的研究淡水冰下的气泡温度梯度进行了实验室。自然冰川冰和培育的冰温度在-36℃,测量吗4℃和泡沫直径23 - 2000μm。冰川冰从附近的一个深度采样关闭(74)JEMS2冰芯峰会上,格陵兰岛。通过将厚冰的部分安装在一个温度梯度阶段实验室显微镜在冰箱里。最大和最小的迁移率为5.45μmh ~ (1) (K厘米~(- 1))~(1)在4℃和0.03μm h ~ (1)(K厘米~(- 1))~(1)在-36℃。对温度的依赖,迁移率发现与泡沫的大小成正比。这是由于内部空气压力在泡沫,这可能与时间自关闭,因此与泡沫的大小。迁移率没有明显的依赖泡沫的形状。在海上计算泡沫深度的函数冰川表明利率很低相对于预测升华率,这样的冰表面不会失去空气泡泡净向下迁移。因此不太可能气泡迁移可能超过推进升华方面,改变冰川几乎没有气泡冰类型,类似于low-albedo海洋冰

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