首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >HOW WILL CLIMATE CHANGE IMPACT THE STORM MAGNITUDE AND THROUFALL IN SEVERAL FOREST AREAS IN IRAN?
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HOW WILL CLIMATE CHANGE IMPACT THE STORM MAGNITUDE AND THROUFALL IN SEVERAL FOREST AREAS IN IRAN?

机译:气候变化将如何影响暴风雨体积和伊朗的几个森林地区的训练?

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Across all forest systems, the primary driver of throughfall (TF) amount is rainfall amount (Pg) though no work has addressed the sensitivity of the TF response to projected shifts in Pg due to climate change. We assessed how climate change may impact TF sensitivity to variability in Pg for eleven typical forest sites across the main climate types of Iran using a nondimensional relative sensitivity coefficient. The Coupled Model Intercomparison Project phase 5 (CMIP5) HadGEM2-ES product was used under two emission scenarios (Representative Concentration Pathway (RCP) 2.6 and 8.5) to project yearly precipitation and Pg for the measurement sites during 2020–50. There was a strong linear relationship between TF and Pg at all sites [TF = 0.66 (Pg) – 0.30; R2 = 0.91; n = 639]. The sensitivity coefficient ranged from 0.96–5.3 across the eleven forest sites. Large sensitivity coefficient differences were found between small ( mean annual Pg) and large ( mean annual Pg) storms for arid plantations. To buffer expected shifts in storm size due to climate change, it may be suitable to incorporate TF sensitivity when choosing landscaping and urban greening. Shifts in Pg and increased small storm frequency are predicted for 2020–50 per CMIP5 HadGEM2-ES low and high emission scenarios.
机译:遍布所有森林系统,通过降雨量(TF)金额的主要驱动因素是降雨量(PG),尽管由于气候变化,PG的预计转变对PG的预计变化的敏感性达到了降雨量(PG)。我们评估了气候变化如何影响PG的敏感性对PG的变异性,使用非潜力相对敏感系数的主要气候类型的伊朗的11个典型的森林场地。在2020-50期间,在两个发射场景(代表性浓度途径(RCP)2.6和8.5)下使用耦合模型依诊项目阶段5(CMIP5)HADGEM2-ES产品,以在2020-50期间对测量位点进行每年降水和PG。在所有网站的TF和PG之间存在强烈的线性关系[TF = 0.66(PG) - 0.30; R2 = 0.91; n = 639]。敏感度系数在整个十一森林地点的0.96-5.3之间。在干旱种植园的小(<均值年度PG)和大(>平均年度PG)风暴之间发现了大的敏感系数差异。由于气候变化导致风暴大小的预期换档,在选择环境美化和城市绿化时,它可能适用于TF灵敏度。 PG中的移位和增加的小型风暴频率预测为每CMIP5 HADGEM2-ES的2020-50,低发射场景。

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