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Evidence of recent changes in the ice regime of lakes in the Canadian High Arctic from spaceborne satellite observations

机译:来自星载卫星观测的加拿大高北极地区湖冰状况最近变化的证据

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pstrongAbstract./strong Arctic lakes, through their ice cover phenology, are a key indicator of climatic changes that the high-latitude environment is experiencing. In the case of lakes in the Canadian Arctic Archipelago (CAA), many of which are ice covered more than 10 months per year, warmer temperatures could result in ice regime shifts. Within the dominant polar-desert environment, small local warmer areas have been identified. These relatively small regions a?? polar oases a?? with longer growing seasons and greater biological productivity and diversity are secluded from the surrounding barren polar desert. The ice regimes of 11??lakes located in both polar-desert and polar-oasis environments, with surface areas between 4 and 542span class="thinspace"/spankmsup2/sup, many of unknown bathymetry, were documented. In order to investigate the response of ice cover of lakes in the CAA to climate conditions during recent years, a 15-year time series (1997a??2011) of RADARSAT-1/2 ScanSAR Wide Swath, ASAR Wide Swath, and Landsat acquisitions were analyzed. Results show that melt onset occurred earlier for all observed lakes. With the exception of Lower Murray Lake, all lakes experienced earlier summer ice minimum and water-clear-of-ice (WCI) dates, with greater changes being observed for polar-oasis lakes (9a??24??days earlier WCI dates for lakes located in polar oases and 2a??20??days earlier WCI dates for polar-desert lakes). Additionally, results suggest that some lakes may be transitioning from a perennial/multiyear to a seasonal ice regime, with only a few lakes maintaining a multiyear ice cover on occasional years. Aside Lake Hazen and Murray Lakes, which preserved their ice cover during the summer of 2009, no residual ice was observed on any of the other lakes from 2007 to 2011./p.
机译:> >摘要。北极湖泊的冰盖物候特征是高纬度环境正在经历的气候变化的关键指标。以加拿大北极群岛(CAA)的湖泊为例,其中许多湖泊每年覆冰超过10个月,温度升高可能会导致冰层变化。在占主导地位的极地沙漠环境中,已经确定了较小的局部温暖区域。这些相对较小的地区极地绿洲a ??由于周围贫瘠的极地荒漠,生长季节更长,生物生产力和多样性更高。位于极地沙漠和极绿洲环境中的11座湖泊的冰层,表面积在4到542 class =“ thinspace”> km 2 之间未知的测深记录。为了调查近年来CAA的湖泊冰盖对气候条件的响应,采用15年时间序列(1997a ?? 2011)RADARSAT-1 / 2 ScanSAR宽幅,ASAR宽幅和Landsat采集被分析。结果表明,所有观察到的湖泊都较早发生融化。除Lower Murray湖外,所有湖泊均经历了较早的夏季最低冰期和冰雪期(WCI),极地绿洲湖泊观测到了更大的变化(WCI日期早9a ?? 24?天)。位于极地绿洲的湖泊和WCI早2a ?? 20 ??天的日期为极地沙漠湖泊)。此外,结果表明,一些湖泊可能正在从多年生/多年生制向季节性冰冻制过渡,只有少数湖泊偶尔会保持多年制冰覆盖。除了在2009年夏天保留冰盖的Hazen湖和Murray湖外,从2007年到2011年,其他任何湖泊都没有观察到结冰。

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