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首页> 外文期刊>Journal of Climate >Effect of Anthropogenic Land-Use and Land-Cover Changes on Climate and Land Carbon Storage in CMIP5 Projections for the Twenty-First Century
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Effect of Anthropogenic Land-Use and Land-Cover Changes on Climate and Land Carbon Storage in CMIP5 Projections for the Twenty-First Century

机译:在21世纪CMIP5预测中,人为土地利用和土地覆盖变化对气候和土地碳储量的影响

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摘要

The effects of land-use changes on climate are assessed using specified-concentration simulations complementary to the representative concentration pathway 2.6 (RCP2.6) and RCP8.5 scenarios performed for phase 5 of the Coupled Model Intercomparison Project (CMIP5). This analysis focuses on differences in climate and land-atmosphere fluxes between the ensemble averages of simulations with and without land-use changes by the end of the twenty-first century. Even though common land-use scenarios are used, the areas of crops and pastures are specific for each Earth system model (ESM). This is due to different interpretations of land-use classes. The analysis reveals that fossil fuel forcing dominates land-use forcing. In addition, the effects of land-use changes are globally not significant, whereas they are significant for regions with land-use changes exceeding 10%. For these regions, three out of six participating models-the Second Generation Canadian Earth System Model (CanESM2); Hadley Centre Global Environmental Model, version 2 (Earth System) (HadGEM2-ES); and Model for Interdisciplinary Research on Climate, Earth System Model (MIROC-ESM)-reveal statistically significant changes in mean annual surface air temperature. In addition, changes in land surface albedo, available energy, and latent heat fluxes are small but significant for most ESMs in regions affected by land-use changes. These climatic effects are relatively small, as land-use changes in the RCP2.6 and RCP8.5 scenarios are small in magnitude and mainly limited to tropical and subtropical regions. The relative importance of the climatic effects of land-use changes is higher for the RCP2.6 scenario, which considers an expansion of biofuel croplands as a climate mitigation option. The underlying similarity among all models is the loss in global land carbon storage due to land-use changes.
机译:土地使用变化对气候的影响使用特定浓度模拟进行评估,该模拟是对耦合模型比较项目(CMIP5)第5阶段进行的代表性浓度路径2.6(RCP2.6)和RCP8.5情景的补充。该分析的重点是到二十一世纪末,在有无土地利用变化的情况下,模拟的总体平均值之间的气候和土地-大气通量的差异。即使使用了常见的土地利用方案,每种地球系统模型(ESM)的作物和牧场面积也是特定的。这是由于对土地利用类别的不同解释。分析表明,化石燃料强迫在土地利用强迫中占主导地位。此外,土地利用变化的影响在全球范围内并不显着,而对于土地利用变化超过10%的区域而言,影响却很大。对于这些地区,六个参与模型中的三个-第二代加拿大地球系统模型(CanESM2);哈德利中心全球环境模型,第2版(地球系统)(HadGEM2-ES);和气候学跨学科研究模型,地球系统模型(MIROC-ESM)揭示了年平均地表气温的统计显着变化。此外,在受土地利用变化影响的地区,大多数ESMs的地表反照率,可用能量和潜热通量变化很小,但意义重大。这些气候影响相对较小,因为RCP2.6和RCP8.5情景中的土地利用变化幅度较小,并且主要限于热带和亚热带地区。在RCP2.6情景中,土地利用变化的气候影响的相对重要性更高,该情景认为将生物燃料耕地的扩张作为缓解气候变化的选择。所有模型之间的根本相似之处是由于土地利用变化而导致的全球土地碳储量损失。

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