首页> 外文会议>International conference on offshore mechanics and arctic engineering >A NUMERICAL SIMULATION OF PHYSICAL ENVIRONMENTS IN THE ARIAKE SEA INCLUDING THE EFFECTS OF THE TIDAL FLAT
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A NUMERICAL SIMULATION OF PHYSICAL ENVIRONMENTS IN THE ARIAKE SEA INCLUDING THE EFFECTS OF THE TIDAL FLAT

机译:Ariake海中物理环境的数值模拟,包括潮汐平的效果

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The Ariake Sea surrounded by Nagasaki, Kumamoto, Saga and Fukuoka prefecture, Japan has a huge tidal flat area and very high productivity. However, human activities such as reclamation of this tidal flat and loading from the rivers have polluted its environments. As a result, the number of red tides and amount of oxygen deficient water in the Ariake Sea and the area where those phenomena occur has increased from 1980s. The red tide by Rhizosolenia imbricata that occurred November, 2000 caused particularly severe damage to the laver cultivation. The real cause for these phenomena has not clearly been identified, But resolution of these problems requires a physical and biochemical study of the environments. As the first step in such an approach, the authors developed a method to reproduce the physical environments with high accuracy by using numerical simulation which considers the effects on tidal flat and compares them with the observed physical environments. The simulation shows good agreement with the observations made in the Ariake Sea itself.
机译:日本湖北省熊崎,萨迦和福冈县周围环绕的ariake海有巨大的潮汐面积,生产力很高。然而,人类的活动,例如填海这个潮汐和从河流装载的繁殖污染了其环境。结果,咏叹调海洋中的红潮和缺氧水量的数量和发生在20世纪80年代的那些现象的区域。 2000年11月发生的Rhizosolenia Imbricata的红潮引起了对紫菜栽培的特别严重的伤害。这些现象的真正原因没有明确识别,但解决这些问题需要对环境的物理和生化研究。作为这样一种方法的第一步,作者开发了一种通过使用数值模拟来再现高精度来再现物理环境的方法,该数值模拟认为潮汐平面的效果并将其与观察到的物理环境进行比较。模拟显示了与Ariake Sea本身的观察结果吻合良好。

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