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On parameterization of heat conduction in coupled soil water and heat flow modelling

机译:土壤水热耦合模拟中的热传导参数化

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Soil water and heat transport plays an important role in various hydrologic, agricultural, and industrial applications. Accordingly, an increasing attention is paid to relevant simulation models. In the present study, soil thermal conditions at a mountain meadow during the vegetation season were simulated. A dual-continuum model of coupled water and heat transport was employed to account for preferential flow effects. Data collected at an experimental site in the ?umava Mountains, southern Bohemia, during the vegetation season 2009 were employed. Soil hydraulic properties (retention curve and hydraulic conductivity) determined by independent soil tests were used. Unavailable hydraulic parameters were adjusted to obtain satisfactory hydraulic model performance. Soil thermal properties were estimated based on values found in literature without further optimization. Three different approaches were used to approximate the soil thermal conductivity function, λ(θ): (i) relationships provided by Chung and Horton (ii) linear estimates as described by Loukili, Woodbury and Snelgrove, (iii) methodology proposed by C?té and Konrad. The simulated thermal conditions were compared to those observed. The impact of different soil thermal conductivity approximations on the heat transport simulation results was analysed. The differences between the simulation results in terms of the soil temperature were small. Regarding the surface soil heat flux, these differences became substantial. More realistic simulations were obtained using λ(θ) estimates based on the soil texture and composition. The differences between these two, related to neglecting vs. considering λ(θ) non-linearity, were found negligible.
机译:土壤水和热传输在各种水文,农业和工业应用中都起着重要作用。因此,越来越多地关注相关的仿真模型。在本研究中,模拟了植被季节山草甸的土壤热状况。水和热传递耦合的双连续模型被用来解释优先流动效应。使用了在波希米亚南部2009年植被旺季期间的一个实验点收集的数据。使用通过独立的土壤测试确定的土壤水力特性(保留曲线和水力传导率)。调整不可用的水力参数以获得令人满意的水力模型性能。土壤热性质是根据​​文献中发现的值估算的,无需进一步优化。使用三种不同的方法来近似土壤热导率函数λ(θ):(i)Chung和Horton提供的关系(ii)Loukili,Woodbury和Snelgrove描述的线性估计,(iii)C?té提出的方法和康拉德。将模拟的热条件与观察到的条件进行了比较。分析了不同土壤热导率近似值对传热模拟结果的影响。在土壤温度方面,模拟结果之间的差异很小。关于表层土壤热通量,这些差异变得很大。使用基于土壤质地和组成的λ(θ)估计值,可以得到更逼真的模拟。发现这两者之间的差异可以忽略不计,这与忽略和考虑λ(θ)非线性有关。

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