首页> 外文期刊>Journal of Marine Science and Engineering >Development of a Kelp-Type Structure Module in a Coastal Ocean Model to Assess the Hydrodynamic Impact of Seawater Uranium Extraction Technology
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Development of a Kelp-Type Structure Module in a Coastal Ocean Model to Assess the Hydrodynamic Impact of Seawater Uranium Extraction Technology

机译:在沿海海洋模型中开发海带型结构模块以评估海水铀提取技术的水动力影响

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With the rapid growth of global energy demand, interest in extracting uranium from seawater for nuclear energy has been renewed. While extracting seawater uranium is not yet commercially viable, it serves as a “backstop” to the conventional uranium resources and provides an essentially unlimited supply of uranium resource. With recent technology advances, extracting uranium from seawater could be economically feasible only when the extraction devices are deployed at a large scale (e.g., several hundred km2). There is concern however that the large scale deployment of adsorbent farms could result in potential impacts to the hydrodynamic flow field in an oceanic setting. In this study, a kelp-type structure module based on the classic momentum sink approach was incorporated into a coastal ocean model to simulate the blockage effect of a farm of passive uranium extraction devices on the flow field. The module was quantitatively validated against laboratory flume experiments for both velocity and turbulence profiles.Model results suggest that the reduction in ambient currents could range from 4% to 10% using adsorbent farm dimensions and mooring densities previously described in the literature and with typical drag coefficients.
机译:随着全球能源需求的快速增长,人们对从海水中提取铀以用于核能的兴趣有了新的增长。虽然开采海水铀尚不具有商业可行性,但它可作为常规铀资源的“后盾”,并提供了无限量的铀资源供应。随着最新技术的进步,仅当大规模地使用提取装置(例如几百公里 2 )时,从海水中提取铀才是经济上可行的。然而,人们担心,大规模部署吸附剂场可能会对海洋环境中的流体动力流场产生潜在影响。在这项研究中,将基于经典动量沉没法的海带型结构模块结合到沿海海洋模型中,以模拟无源铀提取设备场对流场的阻塞效应。该模块通过实验室水槽实验对速度和湍流曲线进行了定量验证,模型结果表明,使用先前文献中所述的吸附剂场尺寸和系泊密度以及典型的阻力系数,环境电流的降低范围为4%至10% 。

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