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首页> 外文期刊>Aquaculture Research >Implications of marine environment change on Japanese scallop (Mizuhopecten yessoensis) aquaculture suitability: a comparative study in Funka and Mutsu Bays, Japan
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Implications of marine environment change on Japanese scallop (Mizuhopecten yessoensis) aquaculture suitability: a comparative study in Funka and Mutsu Bays, Japan

机译:海洋环境变化对日本扇贝(Mizuhopecten yessoensis)水产养殖适宜性的影响:日本Funka和Mutsu湾的比较研究

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The determination of the causes for the changes in marine environment in areas with similar oceanic climate forcing on most suitable sites for scallop aquaculture can help to ensure long-term sustainability of the coastal ecosystem. This study assessed aquaculture suitability sites using dominant indicators of marine ecological dynamics on Japanese scallop culture in Funka and Mutsu Bays, Japan as comparative examples. Data sources comprised of Moderate Resolution Imaging Spectroradiometer (MODIS), four dimensional-variational (4D-VAR) data assimilation system, Advanced Land Observing Satellite (ALOS), in situ and buoy measurements. The suitable sites were ranked on a scale of 1 (least suitable) to 8 (most suitable). In the most suitable sites in aquaculture operational areas, Funka Bay had a high proportion (51.1%) than Mutsu Bay (13.7%) for the best performed model. Peaks of aquaculture suitability scores were attributed to potential effects of currents. Extreme sea temperatures (>24 degrees C) in summer 2010 were associated with low performance of the 2010 model in Mutsu Bay and mortality of scallops based on sea temperature-depth visualizations. Future global warming effects are likely to decrease the most suitable culture sites in Funka Bay and loss of similar areas in Mutsu Bay. Thus, change in marine environment influences scallop culture development. Such concepts could form scientific basis for aquaculture planning on designated system of larval distribution and stock management of cultured species to minimize mortality and economic losses.
机译:确定在最适合扇贝养殖的地点上具有类似海洋气候的地区海洋环境变化的原因,有助于确保沿海生态系统的长期可持续性。这项研究使用日本扇贝和日本姆津湾扇贝养殖海洋生态动力学的主要指标评估了水产养殖适宜性地点,作为对比例。数据源包括中分辨率成像光谱仪(MODIS),四维变化(4D-VAR)数据同化系统,高级陆地观测卫星(ALOS),原位和浮标测量。合适的位点以1(最不适合)至8(最不适合)的等级进行排名。在水产养殖作业区最合适的地点,对于表现最佳的模型,Funka Bay的比例(51.1%)高于Mutsu Bay(13.7%)。水产养殖适宜性得分的峰值归因于水流的潜在影响。 2010年夏季极端海温(> 24摄氏度)与Mutsu湾2010年模型的低性能以及基于海温深度可视化技术的扇贝死亡率有关。未来全球变暖的影响很可能会减少Funka湾最适合的养殖地点,而Mutsu湾的类似地区将会减少。因此,海洋环境的变化影响了扇贝养殖的发展。这些概念可为指定的幼体分布系统和养殖物种种群管理系统的水产养殖规划提供科学依据,以最大程度地降低死亡率和经济损失。

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