The Effect of Superglacial Débris on the Advance and Retreat of Some Canadian Glaciers
The Effect of Superglacial Débris on the Advance and Retreat of Some Canadian Glaciers
复制标题
冰上碎片对加拿大部分冰川进退的影响
DOI:
10.1086/621194
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发表时间:
1904
期刊:
影响因子:
--
通讯作者:
I. H. Ogilvie
中科院分区:
文献类型:
--
作者:
I. H. Ogilvie
OBSERVATIONS on rates of motion, amounts of advance or retreat of glaciers, and kindred statistics are now being collected from all quarters of the globe in the hope of deducing some general laws of ice-motion in the present, and of throwing some light on glacial conditions in the past.' Obviously the advance of glaciers is influenced by two factors: (i) rate of motion, and (2) rate of waste. Any cause increasing the rate of motion will tend to push the front of the ice forward, and this advance will be held in check only by the amount of waste. Waste will be increased either by a rise in temperature, producing increased melting and evaporation, or by increased exposure to dry air producing evaporation. A glacier may advance, therefore, either from increased motion or from decreased waste. Observations on the advance or retreat of existing glaciers have been correlated almost exclusively with the factors influencing rate of motion. The rate of waste is usually neglected, or is regarded as of secondary importance. Of secondary importance it may be in the case of any one glacier, since the daily and annual ranges in temperature about the freezing-point are approximately the same in successive years. Hence it may be safely assumed that the amount of water lost by any one glacier will differ from year to year mainly in proportion to changes in the mass of the ice, which in turn is affected by rate of motion. But when different glaciers are compared, it becomes evident that rate of waste is an important factor in determining the position of the ice-front. Glaciers differ from each other in rate of waste, as they do in rate of motion, and a sluggish glacier, slow-moving and slow-wasting, may advance farther than one whose rate of motion is faster, but whose rate of waste is also faster.