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The effect of the feedback cycle between the soil organic carbon and the soil hydrologic and thermal dynamics

机译:土壤有机碳与土壤水文和热力学之间的反馈循环效应

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Biogeochemical feedback processes between soil organic carbon (SOC) in high-latitude organic soils and climate change is of great concern for projecting future climate. More accurate models of the SOC stock and its dynamics in organic soil are of increasing importance. As a first step toward creating a soil model that accurately represents SOC dynamics, we have created the Physical and Biogeochemical Soil Dynamics Model (PB-SDM) that couples a land surface model with a SOC dynamics model to simulate the feedback cycle of SOC accumulation and thermal hydrological dynamics of high-latitude soils. The model successfully simulated soil temperatures for observed data from a boreal forest near Fairbanks, and 2000 year simulations indicated that the effect of the feedback cycle of SOC accumulation on soil thickness would result in a significant differences in the amount of SOC.
机译:高纬度有机土壤中的土壤有机碳(SOC)与气候变化之间的生物地球化学反馈过程对于预测未来的气候非常重要。 SOC储量及其在有机土壤中的动力学的更精确模型的重要性日益提高。作为创建可准确表示SOC动力学的土壤模型的第一步,我们创建了物理和生物地球化学土壤动力学模型(PB-SDM),该模型将土地表面模型与SOC动力学模型耦合在一起,以模拟SOC累积和反馈的循环。高纬度土壤的热水文动力学。该模型成功地模拟了费尔班克斯(Fairbanks)附近寒带森林的观测数据的土壤温度,并且2000年的模拟结果表明,SOC积累的反馈循环对土壤厚度的影响将导致SOC量的显着差异。

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