Liu Junjun, Zhao Yifan, Chen Xi, Akarsha Sunila
School of Fine Art and Design, Hubei University of Science and Technology, Xianning, Hubei, 437100, China.
Institute of Science and Technology Research, Hebei University of Engineering Handan, Hebei, 056038, China.
Heliyon. 2024 Apr 16;10(9):e29800. doi: 10.1016/j.heliyon.2024.e29800. eCollection 2024 May 15.
When contributors' goals and legislative and political structures vary, as they often do in the case of worldwide fish populations, it becomes more challenging to implement ethical fishing tactics. Canada, the United States, and Mexico all fish from Pacific regions anchovies in the California Modern. Climate-driven numbers and geographic dynamics may pollute the waters of collaborative aquaculture and lead to overloading. This research expands upon prior works using a game theoretic model of Tran's boundary sardine fisheries in different climatic conditions to account for ecological links. More significant economic advantages accrue from cooperation fishing tactics that consider the mackerel's role as feed for other species in the natural system, as opposed to plans that merely take note of the worth of mackerel harvests to a particular fishing nation. The maximum environmental benefit is obtained at a fishery rate for sardines barely less than the sardine Fishery Management Safe Yield. Ecological-based control of fisheries can increase sustainability and profits, but only if investors and policy makers consider the ecology in business-applicable models. Understanding and adapting to the fast alterations in habitat distributions due to climate change and designing ways to achieve viable and lucrative fishery amidst altering environments will necessitate an increased emphasis on ecosystem-based governance.
当各方的目标以及立法和政治结构存在差异时(在全球鱼类种群问题上这种情况很常见),实施符合道德规范的捕鱼策略就变得更具挑战性。加拿大、美国和墨西哥都在加利福尼亚湾捕捞太平洋凤尾鱼。气候驱动的数量变化和地理动态可能会污染合作水产养殖的水域并导致负荷过重。本研究在先前工作的基础上进行拓展,运用博弈论模型研究不同气候条件下特兰边界沙丁鱼渔业,以考虑生态联系。相较于仅仅关注鲭鱼捕捞量对某个特定捕鱼国家的价值的计划,考虑到鲭鱼在自然系统中作为其他物种食物的作用的合作捕鱼策略能带来更显著的经济优势。在沙丁鱼捕捞率略低于沙丁鱼渔业管理安全产量时可获得最大环境效益。基于生态的渔业管控能够提高可持续性和利润,但前提是投资者和政策制定者在适用于商业的模型中考虑生态因素。要理解并适应气候变化导致的栖息地分布的快速变化,以及设计在不断变化的环境中实现可行且有利可图的渔业的方法,就需要更加重视基于生态系统的治理。