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A simplified Permafrost-Carbon model for long-term climate studies with the CLIMBER-2 coupled earth system model

机译:使用CLIMBER-2耦合地球系统模型进行长期气候研究的简化永久冻土碳模型

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摘要

We present the development and validation of a simplified permafrost-carbon mechanism for use with the land surface scheme operating in the CLIMBER-2 earth system model. The simplified model estimates the permafrost fraction of each grid cell according to the balance between modelled cold (below 0 °C) and warm (above 0 °C) days in a year. Areas diagnosed as permafrost are assigned a reduction in soil decomposition rate, thus creating a slow accumulating soil carbon pool. In warming climates, permafrost extent reduces and soil decomposition rates increase, resulting in soil carbon release to the atmosphere. Four accumulation/decomposition rate settings are retained for experiments within the CLIMBER-2(P) model, which are tuned to agree with estimates of total land carbon stocks today and at the last glacial maximum. The distribution of this permafrost-carbon pool is in broad agreement with measurement data for soil carbon content. The level of complexity of the permafrost-carbon model is comparable to other components in the CLIMBER-2 earth system model.
机译:我们介绍了简化的永久冻土碳机制的开发和验证,该机制可与在CLIMBER-2地球系统模型中运行的地表方案一起使用。简化模型根据一年中建模的寒冷天(0°C以下)和温暖天(0°C以上)之间的平衡来估算每个网格的多年冻土分数。被诊断为多年冻土的地区被分配为土壤分解速率降低的区域,从而形成了缓慢积累的土壤碳库。在气候变暖的情况下,多年冻土的程度降低,土壤分解速率增加,导致土壤碳释放到大气中。在CLIMBER-2(P)模型中保留了四个累积/分解速率设置用于实验,这些设置已调整为与当前和上一个冰期最高时的土地总碳储量估算值一致。多年冻土-碳库的分布与土壤碳含量的测量数据基本一致。多年冻土碳模型的复杂程度可与CLIMBER-2地球系统模型中的其他组件相比。

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