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Spread externalities and the implications of heterogeneous ecological capacity constraints

机译:传播外部性以及异构生态容量限制的影响

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摘要

We develop a spatial-dynamic model of resource management in the presence of externalities, such as the spread of harmful invasive species, and show that ecological capacity constraints influence optimal management strategies across space. We use integer-programming methods to solve for optimal control strategies in both homogeneous and heterogeneous landscapes. Using the spread of gypsy moths as an application, our results show that optimal levels of control vary over space in landscapes with heterogeneous capacity constraints. Optimal outcomes depend on the marginal costs and damages associated with the externality and the emergence of spread externalities from relative differences in population levels between adjacent patches. In models with high degrees of heterogeneity, we show that a naive policy assuming homogeneous carrying capacity results in a significantly higher welfare losses from the externality.
机译:我们在外部性存在下开发资源管理的空间动态模型,例如有害侵入物种的传播,并表明生态容量限制影响了空间的最佳管理策略。我们使用整数编程方法来解决均匀和异质景观中的最佳控制策略。使用吉普赛飞蛾作为申请的传播,我们的结果表明,最佳的控制水平在具有异质容量限制的景观中变化。最佳结果取决于与外部性相关的边际成本和损害,以及相邻斑块之间人口水平的相对差异的蔓延外部的出现。在具有高度异质程度的模型中,我们表明,假设均匀承载能力的天真的政策导致外部性能显着提高福利损失。

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