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On the Optimal Size of Marine Reserves

机译:论海洋保护区的最佳规模

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The excessive and unsustainable exploitation of our marine resources has led to the promotion of marine reserves as a fisheries management tool. Marine reserves, areas in which fishing is restricted or prohibited, can offer opportunities for the recovery of exploited stock and fishery enhancement. This study examines the impact of the creation of marine protected areas, from both economic and biological perspectives. The consequences of reserve establishment on the long-run equilibrium fish biomass and fishery catch levels are evaluated. We include reserve size as control variable to maximize catch at equilibrium. A continuous time model is used to simulate the effects of reserve size on fishing catch. Fish movements between the sites is assumed to take place at a faster time scale than the variation of the stock and the change of the fleet size. We take advantage of these two time scales to derive a reduced model governing the dynamics of the total fish stock and the fishing effort. Simulation results suggest that the establishment of a protected marine reserve will always lead to an increase in total fish biomass, an optimal size of a marine reserve can achieve to maximize the catch at equilibrium.
机译:对我们海洋资源的过度和不可持续的开采导致了海洋保护区作为渔业管理工具的发展。海洋保护区是限制或禁止捕鱼的地区,可以为恢复被开发种群和增加渔业提供机会。这项研究从经济和生物学的角度研究了建立海洋保护区的影响。评价了储备金建立对长期均衡鱼类生物量和渔业捕捞水平的影响。我们将储量大小作为控制变量,以最大程度地达到平衡时的产量。连续时间模型用于模拟保护区大小对渔获量的影响。假定地点之间的鱼类运动比种群变化和船队规模变化更快。我们利用这两个时间尺度来推导简化的模型,以控制总鱼类种群和捕捞努力的动态。模拟结果表明,建立受保护的海洋保护区将始终导致鱼类总生物量的增加,可以实现海洋保护区的最佳规模,以使平衡时的捕捞量最大化。

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