Diverging models introduce large uncertainty in future climate warming impact on spring phenology of temperate deciduous trees
ID:1892 View Protection:ATTENDEE Updated Time:2021-06-16 16:59:51 Hits:1653 Oral Presentation

Start Time:2021-07-11 17:15(Asia/Shanghai)

Duration:15min

Session:S7B 7B、地理及地理信息科学 » S7B-3专题7.7 陆地生态系统物候与碳循环遥感及模拟

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Abstract
Spring phenology influences terrestrial ecosystem carbon, water and energy exchanges between the biosphere and atmosphere. Accurate prediction of spring phenology is therefore a prerequisite to foresee the impacts of climate warming on terrestrial ecosystems. In the present study, we studied the model performance of four widely used process-based models of spring leaf unfolding, including both a one-phase model (not considering a chilling phase: the Thermal Time model) and three two-phase models (all accounting for a required chilling period: the Parallel model, the Sequential model, the Unified model). Models were tested on five deciduous tree species occurring across Europe. We specifically investigated the divergence of their phenology predictions under future climate warming scenarios and studied the differences in the chilling periods. We found that, in general, the two-phase models performed slightly better than the one-phase model when fitting to the observed data, with all two-phase models performing similarly. However, leaf unfolding projections diverged substantially among the two-phase models over the period 2070-2100. Furthermore, we found that the modeled end dates of the chilling periods in these models also diverged, with advances for both the Sequential and Parallel models during the period 2070-2100 (compared to the period 1980-2010), and delays in the Unified model. These findings thus highlight large uncertainty in the two-phase phenology models and confirm that the mechanism underlying the leaf unfolding process is not yet understood. We therefore urgently need an improved understanding of the leaf unfolding process in order to improve the representation of phenology in terrestrial ecosystem models.
 
Keywords
climate warming, phenology models, leaf unfolding, chilling period, Europe, uncertainty
Speaker
赵红芳
华东师范大学

Submission Author
赵红芳 华东师范大学
付永硕 北京师范大学
王旭辉 北京大学
张原 北京大学
刘永稳 中国科学院青藏高原研究所
JanssensIvan 安特卫普大学
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Important Date
  • Conference Date

    Jul 09

    2021

    to

    Jul 11

    2021

  • May 30 2021

    Abstract Submission Deadline

  • May 30 2021

    Draft paper submission deadline

  • May 30 2021

    Early Bird Registration

  • Jul 10 2021

    Registration deadline

  • Jul 11 2021

    Contribution Submission Deadline

Sponsored By
青年地学论坛理事会
Organized By
中国科学院地球化学研究所
贵州大学
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