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Regulation Of Fisheries Bycatch With Common-pool Output Quotas

机译:共同池输出配额对渔业兼捕的监管

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Many fisheries around the world are plagued with the problem of bycatch-the inadvertent harvesting and discard of non-targeted species. Bycatch occurs when targeted and non-targeted species coincide in the same habitat and gear is imperfectly selective. One of the prevailing methods of controlling bycatch is the common-pool quota system. Under this system, biologists set total allowable catches (TACs) for both the targeted and non-targeted species, and the fishing season is closed when one of these TACs binds. We develop a predictive model of a renewable resource that is regulated with this kind of common-pool quota system. The model demonstrates that the equilibrium will generally be characterized by excessive discards, shortened seasons, and foregone target species harvest. These results occur even with very efficient (low bycatch) fishing gear. We examine the sensitivity of our predictions to changes in technological parameters and degrees of spatial correlation of target and non-target species. Finally, we derive the optimal bycatch penalty function and describe its significance in light of various policy options available to regulators.
机译:世界各地的许多渔业都受到兼捕问题的困扰-误捕和丢弃非目标物种。当目标和非目标物种在同一生境中重合且装备选择不完全时,就会发生兼捕。控制兼捕的主要方法之一是公共池配额系统。在此系统下,生物学家为目标物种和非目标物种设定总允许捕捞量(TAC),当这些TAC之一结合时,捕捞季节就关闭了。我们开发了一种可再生资源的预测模型,该模型通过这种公共池配额系统进行监管。该模型表明,平衡通常将以过度丢弃,缩短季节和放弃目标物种收成为特征。即使使用非常有效的(低兼捕)渔具,也会出现这些结果。我们研究了预测对技术参数变化以及目标和非目标物种空间相关程度的敏感性。最后,我们推导出最佳的兼捕惩罚函数,并根据监管机构可用的各种政策选择来描述其重要性。

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