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首页> 外文期刊>Hydrological Processes >Heat transport in the Red Lake Bog, Glacial Lake Agassiz Peatlands
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Heat transport in the Red Lake Bog, Glacial Lake Agassiz Peatlands

机译:冰湖阿加西兹泥炭地红湖沼泽的热传输

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摘要

We report the results of an investigation on the processes controlling heat transport in peat under a large bog in the Glacial Lake Agassiz Peatlands. For 2 years, starting in July 1998, we recorded temperature at 12 depth intervals from 0 to 400 cm within a vertical peat profile at the crest of the bog at sub-daily intervals. We also recorded air temperature 1 m above the peat surface. We calculate a peat thermal conductivity of 0.5 W m~(-1) ℃~(-1) and model vertical heat transport through the peat using the SUTRA model. The model was calibrated to the first year of data, and then evaluated against the second year of collected heat data. The model results suggest that advective pore-water flow is not necessary to transport heat within the peat profile and most of the heat is transferred by thermal conduction alone in these waterlogged soils. In the spring season, a zero-curtain effect controls the transport of heat through shallow depths of the peat. Changes in local climate and the resulting changes in thermal transport still may cause non-linear feedbacks in methane emissions related to the generation of methane deeper within the peat profile as regional temperatures increase.
机译:我们报告了在冰川湖阿加西兹泥炭地大沼泽下控制泥炭传热过程的调查结果。从1998年7月开始的2年中,我们以每隔一天一次的间隔记录了沼泽顶部的垂直泥炭剖面内12个深度范围,从0到400 cm的温度。我们还记录了高于泥炭表面1 m的气温。我们计算出泥炭的导热系数为0.5 W m〜(-1)℃〜(-1),并使用SUTRA模型对通过泥炭的垂直传热进行建模。将模型校准为第一年的数据,然后根据第二年收集的热量数据进行评估。模型结果表明,平流孔隙水流在泥炭剖面内传递热量不是必需的,在这些涝渍土中,绝大部分热量仅通过热传导传递。在春季,零幕效应控制热量在泥炭浅层中的传递。随着区域温度的升高,当地气候的变化以及由此产生的热传输变化仍可能导致甲烷排放的非线性反馈,这与泥炭剖面内更深的甲烷的产生有关。

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