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首页> 外文期刊>Canadian journal of earth sciences >Climate and ground temperature relations at sites across the continuous and discontinuous permafrost zones, northern Canada
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Climate and ground temperature relations at sites across the continuous and discontinuous permafrost zones, northern Canada

机译:加拿大北部连续和不连续多年冻土区各站点的气候和地面温度关系

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摘要

Climate - ground temperature relations are examined under a range of conditions for 10 sites across northern Canada. The sites are located between 60°N and 83°N and at elevations of 40 to 1840 m above sea level. They encompass various environmental and climatic conditions, with permafrost temperatures that range from just below 0 to -15°C. The substrates range from bedrock to fine-grained sediment with high ice content, and vegetation types include coniferous forests in the Mackenzie Valley, shrub tundra at high elevation in the southern Yukon Territory, and polar desert in the High Arctic. Permafrost conditions at all of these sites are determined primarily by air temperature, followed by snow and substrate conditions. The apparent thermal diffusivity is relatively high at colder sites and in bedrock and is lower at sites in sediment with high ice content. Snow has a greater influence on air-ground temperature relations at sites where mean annual air temperatures and active-layer moisture contents are relatively high, leading to physically significant latent heat effects and a slower freeze-back of the active layer.
机译:在加拿大北部10个地点的一系列条件下,研究了气候与地面温度的关系。这些地点位于北纬60°至83°之间,海拔高度40至1840 m。它们涵盖了各种环境和气候条件,永久冻土的温度范围从略低于0到-15°C。基质从基岩到含冰量高的细颗粒沉积物不等,植被类型包括麦肯齐山谷中的针叶林,育空地区南部高海拔的灌木冻原和高北极地区的极地沙漠。所有这些地点的多年冻土条件主要取决于气温,然后取决于雪和底物条件。在较冷的地点和基岩中,表观热扩散率较高,而在含冰量较高的沉积物中,表观热扩散率较低。在年平均气温和活性层含水量相对较高的地方,降雪对空气-地面温度关系的影响更大,从而导致物理上显着的潜热效应和活性层的回冻较慢。

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