Chakraborty Kunal, Das Kunal, Kar T K
Information Services and Ocean Sciences Group, Indian National Centre for Ocean Information Services, Hyderabad, Ocean Valley, Pragathi Nagar BO, Nizampet SO, Hyderabad 500090, India.
J Biol Phys. 2013 Sep;39(4):749-76. doi: 10.1007/s10867-013-9329-5. Epub 2013 Aug 15.
This paper describes a prey-predator type fishery model with prey dispersal in a two-patch environment, one of which is a free fishing zone and other is a protected zone. The existence of possible steady states, along with their local stability, is discussed. A geometric approach is used to derive the sufficient conditions for global stability of the system at the positive equilibrium. Relative size of the reserve is considered as control in order to study optimal sustainable yield policy. Subsequently, the optimal system is derived and then solved numerically using an iterative method with Runge-Kutta fourth-order scheme. Numerical simulations are carried out to illustrate the importance of marine reserve in fisheries management. It is noted that the marine protected area enables us to protect and restore multi-species ecosystem. The results illustrate that dynamics of the system is extremely interesting if simultaneous effects of a regulatory mechanism like marine reserve is coupled with harvesting effort. It is observed that the migration of the resource, from protected area to unprotected area and vice versa, is playing an important role towards the standing stock assessment in both the areas which ultimately control the harvesting efficiency and enhance the fishing stock up to some extent.
本文描述了一种在双斑块环境中具有猎物扩散的捕食 - 被捕食型渔业模型,其中一个斑块是自由捕捞区,另一个是保护区。讨论了可能的稳态的存在性及其局部稳定性。采用几何方法推导了系统在正平衡点处全局稳定的充分条件。将保护区的相对大小作为控制变量,以研究最优可持续产量策略。随后,推导了最优系统,然后使用四阶龙格 - 库塔迭代方法进行数值求解。进行了数值模拟以说明海洋保护区在渔业管理中的重要性。值得注意的是,海洋保护区能够保护和恢复多物种生态系统。结果表明,如果像海洋保护区这样的监管机制与捕捞努力的同时效应相结合,系统的动态将极其有趣。可以观察到,资源在保护区和非保护区之间的迁移,对两个区域的现存生物量评估起着重要作用,最终控制捕捞效率并在一定程度上增加渔业资源量。