首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >THREE-DIMENSIONAL PHYSICAL ENVIRONMENT MODELLING FOR INTEGRATED MULTI-TROPHIC AQUACULTURE (IMTA) IMPLEMENTATION IN ONAGAWA BAY, JAPAN
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THREE-DIMENSIONAL PHYSICAL ENVIRONMENT MODELLING FOR INTEGRATED MULTI-TROPHIC AQUACULTURE (IMTA) IMPLEMENTATION IN ONAGAWA BAY, JAPAN

机译:日本一体式多营养水产养殖(IMTA)实施的三维物理环境建模

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Continually increasing demands on aquaculture products drive the current monoculture to upgrade and upscale because of not only economic but environmental sustainability reasons. Over the past decade, open water integrated multi-trophic aqua-culture (IMTA) practiced as a potential alternative has been demonstratively illustrated from both scientific and public attention. Basing on previous studies of this synergistic aquaculture system, we, here, studied the physical environment in Onagawa Bay as the cornerstone for further IMTA implementation. Onagawa Bay locates in Miyagi Prefecture, Japan, and because of its mature practice on polyculture, it is recognized as a suitable site for IMTA. Unfortunately, the earthquake and tsunami in 2011 caused a huge uncertainty on physical environment changes. Still insufficient researches have been conducted on physical environment study, especially through modelling method. Here, adopting the three-dimensional Marine Environmental Committee (MEC) ocean model, we described the setup and validation for Onagawa Bay in this research. At the present stage, simulation results can best fit observation data on the tidal elevation with the correlation coefficient between observed and simulated tidal elevation reaching 0.96, captured the main characteristic of flow velocity, and exhibited homogenous tendency towards water temperature. Furthermore, through the plot of the residual velocity field and statistical seasonal velocity distribution, potential aquaculture configuration has been discussed spatio-temporally on the hypothesis that high current speeds contribute to the further implementation.
机译:对水产养殖产品的需求不断增长,不仅因为经济原因,而且还考虑到环境可持续性原因,促使当前的单一养殖业升级和规模化。在过去的十年中,科学和公众的关注都说明了作为一种潜在替代品的开放水域综合多营养水产养殖(IMTA)。在此之前,基于这种协同水产养殖系统的研究,我们在此研究了作为进一步实施IMTA的基石的Onagawa湾的自然环境。 Onagawa湾位于日本宫城县,由于其在混养方面的成熟做法,被认为是IMTA的合适地点。不幸的是,2011年的地震和海啸给自然环境的变化带来了巨大的不确定性。在物理环境研究方面,尤其是通过建模方法,还没有进行足够的研究。在这里,我们采用三维海洋环境委员会(MEC)海洋模型,在此研究中描述了Onagawa湾的设置和验证。在现阶段,模拟结果可以最好地拟合潮汐高度的观测数据,观测到的潮汐高度与模拟潮汐高度之间的相关系数达到0.96,捕获了流速的主要特征,并呈现出均匀的水温趋势。此外,通过残留速度场图和统计的季节性速度分布图,时空讨论了潜在的水产养殖配置,其前提是高电流速度有助于进一步实施。

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