首页> 外文期刊>Forest Ecosystems >Estimating the carbon fluxes of forests with an individual-based forest model
【24h】

Estimating the carbon fluxes of forests with an individual-based forest model

机译:用基于个体的森林模型估算森林的碳通量

获取原文
           

摘要

BackgroundCapturing the response of forest ecosystems to inter-annual climate variability is a great challenge. In this study, we tested the capability of an individual-based forest gap model to display carbon fluxes at yearly and daily time scales. The forest model was applied to a spruce forest to simulate the gross primary production (GPP), respiration and net ecosystem exchange (NEE). We analyzed how the variability in climate affected simulated carbon fluxes at the scale of the forest model. ResultsSix years were simulated at a daily time scale and compared to the observed eddy covariance (EC) data. In general, the seasonal cycle of the individual carbon fluxes was correctly described by the forest model. However, the estimated GPP differed from the observed data on the days of extreme climatic conditions. Two new parameterizations were developed: one resulting from a numerical calibration, and the other resulting from a filtering method. We suggest new parameter values and even a new function for the temperature limitation of photosynthesis. ConclusionsThe forest model reproduced the observed carbon fluxes of a forest ecosystem quite well. Of the three parameterizations, the calibrated model version performed best. However, the filtering approach showed that calibrated parameter values do not necessarily correctly display the individual functional relations. The concept of simulating forest dynamics at the individual base is a valuable tool for simulating the NEE, GPP and respiration of forest ecosystems.
机译:背景技术捕捉森林生态系统对年际气候变化的响应是一个巨大的挑战。在这项研究中,我们测试了基于个人的森林缺口模型显示年和日尺度碳通量的能力。将森林模型应用于云杉林,以模拟初级总产值(GPP),呼吸作用和净生态系统交换(NEE)。我们分析了气候变化如何影响森林模型规模的模拟碳通量。结果以每天的时间尺度模拟六年,并将其与观察到的涡动协方差(EC)数据进行比较。通常,森林模型正确地描述了各个碳通量的季节周期。但是,估计的GPP与极端气候条件下的观测数据有所不同。开发了两个新的参数设置:一个是通过数字校准产生的,另一个是通过滤波方法产生的。对于光合作用的温度限制,我们建议使用新的参数值甚至新功能。结论森林模型很好地再现了观察到的森林生态系统的碳通量。在这三个参数设置中,校准的模型版本表现最佳。但是,过滤方法表明,校准后的参数值不一定正确显示各个功能关系。在个体基础上模拟森林动态的概念是模拟森林生态系统的NEE,GPP和呼吸作用的宝贵工具。

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