首页> 外文期刊>Global Biogeochemical Cycles >Beyond Static Benchmarking: Using Experimental Manipulations to Evaluate Land Model Assumptions
【24h】

Beyond Static Benchmarking: Using Experimental Manipulations to Evaluate Land Model Assumptions

机译:超越静态基准:使用实验操作来评估土地模型假设

获取原文
获取原文并翻译 | 示例
           

摘要

Land models are often used to simulate terrestrial responses to future environmental changes, but these models are not commonly evaluated with data from experimental manipulations. Results from experimental manipulations can identify and evaluate model assumptions that are consistent with appropriate ecosystem responses to future environmental change. We conducted simulations using three coupled carbon-nitrogen versions of the Community Land Model (CLM, versions 4, 4.5, and-the newly developed-5), and compared the simulated response to nitrogen (N) and atmospheric carbon dioxide (CO2) enrichment with meta-analyses of observations from similar experimental manipulations. In control simulations, successive versions of CLM showed a poleward increase in gross primary productivity and an overall bias reduction, compared to FLUXNET-MTE observations. Simulations with N and CO2 enrichment demonstrate that CLM transitioned from a model that exhibited strong nitrogen limitation of the terrestrial carbon cycle (CLM4) to a model that showed greater responsiveness to elevated concentrations of CO2 in the atmosphere (CLM5). Overall, CLM5 simulations showed better agreement with observed ecosystem responses to experimental N and CO2 enrichment than previous versions of the model. These simulations also exposed shortcomings in structural assumptions and parameterizations. Specifically, no version of CLM captures changes in plant physiology, allocation, and nutrient uptake that are likely important aspects of terrestrial ecosystems' responses to environmental change. These highlight priority areas that should be addressed in future model developments. Moving forward, incorporating results from experimental manipulations into model benchmarking tools that are used to evaluate model performance will help increase confidence in terrestrial carbon cycle projections.
机译:陆地模型通常用于模拟对未来环境变化的陆地响应,但这些模型通常不与实验操纵的数据评估。实验操纵的结果可以识别和评估与未来环境变化的适当生态系统反应一致的模型假设。我们使用社区土地模型(CLM,版本4,4.5和新开发-5)的三个耦合碳 - 氮版本进行了模拟,并将模拟响应与大气(N)和大气二氧化碳(CO2)富集进行了比较具有类似实验操作的观察的荟萃分析。在控制模拟中,与Fluxnet-MTE-MTE-MTE观察相比,CLM的CLM的连续版本表明总初级生产率和整体偏差减少。使用N和CO2富集的模拟表明,CLM从将陆地碳循环(CLM4)的强氮限制的模型转化为对大气中升高浓度的CO 2的模型(CLM5)的模型。总体而言,CLM5模拟与观察到的生态系统对实验性N和CO2浓缩的响应更好,而不是先前版本的模型。这些模拟还暴露了结构假设和参数化的缺点。具体而言,没有版本的CLM捕获植物生理学,分配和营养吸收的变化,这可能是陆地生态系统对环境变化的重要方面的重要方面。这些突出显示应在未来的模型开发中解决的优先区域。向前移动,将来自实验操作的结果融入用于评估模型性能的模型基准工具,将有助于增加对陆地碳循环投影的信心。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号