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Seasonal changes in the properties of first-year, second-year and multi-year ice

机译:第一年,第二年和多年冰的性质的季节性变化

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To date, too few measurements have been available to document the seasonal change in the strength for different types of sea ice. The situation is remedied here with nearly 1300 borehole measurements on first-year ice (FYI), second-year ice (SYI) and multi-year ice (MYI) in the Canadian Arctic from the past 15 years. The thickness, temperature, salinity and borehole strength are given for five categories of sea ice: FYI, SYI, young multi-year ice (yMYI), thick level multi-year ice (TkMYI) and hummocked multi-year ice (hMYI). Results show that the deterioration of FYI and SYI is offset by about one month in summer, yMYI is more similar to TkMYI than SYI, and deteriorated MYI floes can have strengths comparable to more competent looking MYI floes in summer. The seasonal reduction in strength for different ice types is expressed here as an 'equivalent floe strength', which is the depth-averaged strength of all boreholes on a floe normalized by the maximum depth-averaged strength of FYI in winter (32 MPa). Seasonal trends in strength show SYI and MYI floes to be stronger than FYI floes in all seasons. The strength of FYI floes decreases from 61% (May) to 9% (July), relative to its 32 MPa winter maximum, whereas the equivalent floe strength of SYI decreases from 69% (May) to 16% (August), relative to 32 MPa. The equivalent floe strength of the combined category of yMYI & TkMYI decreases from 78% or more (May) to 40% (September). The equivalent floe strength of hMYI decreases from 102% (May) to 51% (September).
机译:迄今为止,很少有测量数据可用于记录不同类型海冰强度的季节性变化。在过去的15年中,通过对加拿大北极地区的第一年冰(FYI),第二年冰(SYI)和多年冰(MYI)进行了近1300次钻孔测量,从而纠正了这种情况。给出了五种海冰的厚度,温度,盐度和井眼强度:FYI,SYI,年轻多年期冰(yMYI),厚层多年期冰(TkMYI)和高架多年期冰(hMYI)。结果表明,夏季FYI和SYI的劣化可抵消约一个月,yMYI与TkMYI的相似度高于SYI,而且劣化的MYI絮凝物的强度可与夏季看起来更胜任的MYI絮凝物相媲美。不同类型冰的强度的季节性降低在此表示为“等效絮凝强度”,这是指絮凝物上所有钻孔的深度平均强度,以冬季FYI的最大深度平均强度(32 MPa)归一化。强度的季节性趋势表明SYI和MYI絮凝物在所有季节都比FYI絮凝物强。相对于冬季最高32 MPa,FYI絮凝物的强度从61%(5月)下降至9%(7月),而SYI的等效絮凝强度从69%(5月)下降至16%(8月)。 32兆帕。 yMYI和TkMYI组合类别的等效絮凝强度从78%或更高(5月)降低到40%(9月)。 hMYI的等效絮凝强度从102%(5月)降至51%(9月)。

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