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Groundwater flow with energy transport and water-ice phase change: Numerical simulations, benchmarks, and application to freezing in peat bogs

机译:具有能量传输和水冰相变的地下水流:数值模拟,基准测试以及在泥炭沼泽冻结中的应用

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摘要

In northern peatlands, subsurface ice formation is an important process that can control heat transport, groundwater flow, and biological activity. Temperature was measured over one and a half years in a vertical profile in the Red Lake Bog, Minnesota. To successfully simulate the transport of heat within the peat profile, the U.S. Geological Survey's SUTRA computer code was modified. The modified code simulates fully saturated, coupled porewater-energy transport, with freezing and melting porewater, and includes proportional heat capacity and thermal conductivity of water and ice, decreasing matrix permeability due to ice formation, and latent heat. The model is verified by correctly simulating the Lunardini analytical solution for ice formation in a porous medium with a mixed ice-water zone. The modified SUTRA model correctly simulates the temperature and ice distributions in the peat bog. Two possible benchmark problems for groundwater and energy transport with ice formation and melting are proposed that may be used by other researchers for code comparison.
机译:在北部的泥炭地,地下冰的形成是一个重要的过程,可以控制热量传输,地下水流量和生物活性。在明尼苏达州的红湖沼泽地区,以垂直剖面测量了一年半的温度。为了成功地模拟泥炭剖面内的热量传输,美国地质调查局的SUTRA计算机代码已被修改。修改后的代码模拟了冻结和融化的孔隙水的完全饱和的耦合的孔隙水-能量传输,并包括成比例的热容量和水和冰的热导率,由于冰的形成而降低了基体渗透性以及潜热。通过正确模拟用于混合冰水区域的多孔介质中结冰的Lunardini分析解决方案,可以验证该模型。修改后的SUTRA模型可以正确模拟泥炭沼泽中的温度和冰分布。提出了两个可能的基准问题,涉及地下水和能量随着冰的形成和融化而发生的传输,可供其他研究人员用于代码比较。

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