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Simulating Climate Change Impacts on Hybrid-Poplar and Black Locust Short Rotation Coppices

机译:模拟气候变化对杂交白杨和刺槐短轮伐林的影响

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In Brandenburg, north-eastern Germany, climate change is associated with increasing annual temperatures and decreasing summer precipitation. Appraising short rotation coppices (SRCs), given their long-time planning horizon demands for systematic assessments of woody biomass production under a considerable spectrum of climate change prospects. This paper investigates the prospective growth sensitivity of poplar and black locust SRCs, established in Brandenburg to a variety of weather conditions and long-term climate change, from 2015 to 2054, by a combined experimental and simulation study. The analysis employed (i) a biophysical, process-based model to simulate the daily tree growth and (ii) 100 realisations of the statistical regional climate model STAR 2K. In the last growing period, the simulations showed that the assumed climate change could lead to a decrease in the woody biomass of about 5 Mg ha ?1 (18%) for poplar and a decrease of about 1.7 Mg ha ?1 (11%) for black locust trees with respect to the median observed in the reference period. The findings corroborate the potential tree growth vulnerability to prospective climatic changes, particularly to changes in water availability and underline the importance of coping management strategies in SRCs for forthcoming risk assessments and adaptation scenarios.
机译:在德国东北部的勃兰登堡州,气候变化与年气温升高和夏季降水减少有关。评估短轮转种群(SRC),因为他们需要长期规划才能在相当大的气候变化前景下对木质生物量的生产进行系统评估。本文通过结合实验和模拟研究,调查了2015年至2054年在勃兰登堡建立的杨树和黑刺槐SRC对各种天气条件和长期气候变化的预期生长敏感性。该分析采用(i)基于过程的生物物理模型来模拟树木的日常生长,以及(ii)统计区域气候模型STAR 2K的100种实现。在最后的生长期,模拟显示,假定的气候变化可能导致杨木的木质生物量减少约5 Mg ha?1(18%),减少约1.7 Mg ha?1(11%)。刺参树相对于参考期中位数的平均值。这些发现证实了树木生长对潜在的气候变化,特别是对水供应变化的潜在脆弱性,并强调了应对SRC中应对即将来临的风险评估和适应方案的管理策略的重要性。

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