BioMove - an integrated platform simulating the dynamic response of species to environmental change

BioMove - an integrated platform simulating the dynamic response of species to environmental change
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DOI:
10.1111/j.1600-0587.2009.06000.x
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发表时间:
2010-06-01
期刊:
影响因子:
5.9
通讯作者:
Thuiller, Wilfried
Thuiller, Wilfried
中科院分区:
环境科学与生态学1区
文献类型:
--
作者:
Midgley, Guy F.;Davies, Ian D.;Thuiller, Wilfried

文献摘要

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BioMove模拟植物物种的地理范围变化,以应对气候,栖息地结构和干扰,在每年的时间步长。这种空间上明确的方法集成了物种的生物气候适宜性和人口水平的人口统计率与模拟植被水平的过程(扩散,干扰,物种的动态主导植被结构的反应)。物种种群动态模拟通过矩阵建模,包括缩放人口的气候适宜性率。扩散函数模拟种群扩散。用户指定的植物功能类型(PFT)提供植被结构,决定资源竞争和干扰。PFT每年通过分散,PFT之间的竞争和人口变化做出反应。BioMove为动态范围模拟提供了丰富的框架。
BioMove simulates plant species' geographic range shifts in response to climate, habitat structure and disturbance, at annual time steps. This spatially explicit approach integrates species' bioclimatic suitability and population-level demographic rates with simulation of landscape-level processes (dispersal, disturbance, species' response to dynamic dominant vegetation structure). Species population dynamics are simulated through matrix modelling that includes scaling demographic rates by climatic suitability. Dispersal functions simulate population spread. User-specified plant functional types (PFTs) provide vegetation structure that determines resource competition and disturbance. PFTs respond annually through dispersal, inter-PFT competition and demographic shifts. BioMove provides a rich framework for dynamic range simulations.