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Velocity of climate change algorithms for guiding conservation and management
Authors:Andreas Hamann  David R. Roberts  Quinn E. Barber  Carlos Carroll  Scott E. Nielsen
Affiliation:1. Department of Renewable Resources, Faculty of Agricultural, Life, and Environmental Sciences, University of Alberta, Edmonton, AB, Canada;2. Klamath Center for Conservation Research, Orleans, CA, USA
Abstract:The velocity of climate change is an elegant analytical concept that can be used to evaluate the exposure of organisms to climate change. In essence, one divides the rate of climate change by the rate of spatial climate variability to obtain a speed at which species must migrate over the surface of the earth to maintain constant climate conditions. However, to apply the algorithm for conservation and management purposes, additional information is needed to improve realism at local scales. For example, destination information is needed to ensure that vectors describing speed and direction of required migration do not point toward a climatic cul‐de‐sac by pointing beyond mountain tops. Here, we present an analytical approach that conforms to standard velocity algorithms if climate equivalents are nearby. Otherwise, the algorithm extends the search for climate refugia, which can be expanded to search for multivariate climate matches. With source and destination information available, forward and backward velocities can be calculated allowing useful inferences about conservation of species (present‐to‐future velocities) and management of species populations (future‐to‐present velocities).
Keywords:assisted migration  climate change adaptation  climate change vulnerability  conservation  no‐analogue climates
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