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基于上黄观测站通量数据的常绿阔叶林净生产力VPRM优化模拟

Optimizing VPRM for Net Ecosystem Productivity Simulations in Evergreen Broadleaf Forests using Flux Data from Shanghuang Station, Zhejiang Province

  • 摘要: 基于全国首个大气边界层顶生态环境交叉研究野外高山观测平台上黄观测站CO2通量观测数据,通过更新遥感驱动数据、引入非线性呼吸作用过程、优化光合作用和呼吸作用参数等方式改进WRF-VPRM模型,开展浙江中部地区植被生产力优化模拟研究。改进后的模型能够更准确地刻画植被生产力动态变化特征,获得浙中地区常绿阔叶林的VPRM参数集,对该区域生态系统碳汇研究具有重要意义。未来应结合更多生态系统站点长期观测数据,考虑更复杂生态过程开展模型参数优化,以进一步提升模拟精度与适用范围。

     

    Abstract: WRF (Weather Research and Forecasting) model simulations were optimized based on CO2 flux data from the Atmospheric Boundary Layer Eco-Environment Shanghuang Observatory of the Chinese Academy of Sciences. We update remote sensing input data, introduce nonlinear respiration processes, and optimize photosynthesis and respiration parameters to simulate vegetation productivity in central Zhejiang Province. The optimized model accurately captures the dynamics of vegetation productivity, providing a Vegetation Photosynthetic Respiration Model (VPRM) parameter set for evergreen broadleaf forests in this region. The optimized model would considerably contribute to the evaluation of terrestrial carbon sinks in central Zhejiang Province. Long-term observations from more ecosystem sites need to be integrated, and parameter optimization for more complex ecological processes needs to be conducted to further improve simulation accuracy and applicability.

     

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