相模湾密度流的比例模型试验

K. Ouchi, T. Yamatogi, K. Fukumiya, S. Ogiwara
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引用次数: 1

摘要

日本政府水产厅和21世纪海洋论坛(Marino-Forum 21)从2000年4月开始实施了提高深海水(DOW),并将其作为密度流排放到光层,使富含DOW营养盐的海水能够进行光合作用的项目。这台机器的名字是笼式海洋营养增强器(简称ONE)。ONE的概要概念是:用一个特殊的叶轮提高500米深度的DOW和500,000米/日的sup / 3,它也吸收地表水,以使混合水具有适当的密度。连续排出富营养化混合水,在光区形成密度流。增加密度流层浮游植物(初级生产),增加以上海域鱼类。驱动叶轮的动力由OTEC(海洋热能转换)提供,利用DOW的冷特性。为了确定实海实验地点相模湾的密度流特性,在连续分层咸水槽中进行了1/200的比例模型实验。采用二维和三维流动实验的方法,研究了维持密度流层中丰富营养物的合适放电速度。综上所述,夏季相模湾密度流层厚度约为12 m,使用三维环形喷嘴时,DOW的减薄比为3 ~ 4倍。这些结果对计划于2003年在相模湾建立的ONE的设计非常有价值。
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Scale model experiment on density current in Sagami Bay
The project to create a fishing ground in the open ocean by raising deep ocean water (DOW) and discharging it in the euphotic layer as a density current where photosynthesis can be done by DOW rich nutrient salt has been carried out since April 2000, sponsored by Japanese Government Fisheries Agency and Marino-Forum 21. The name of this machine is the caged Ocean Nutrient Enhancer (ONE for short). The outline concept of ONE is: raising DOW of 500 m depth and 500,000 m/sup 3//day with a special impeller, which also sucks the surface water in order to make a mixed water of proper density. Discharging the nutrient-rich mixed water continuously and making a density current in the euphotic region. Increasing the phytoplankton (primary production) in the layer of the density current increasing fishes in the above sea area. Power for driving the impeller is supplied by OTEC (ocean thermal energy conversion) using the cold characteristics of DOW. To confirm the characteristics of the density current in Sagami Bay where the real sea experiment is scheduled, a scale model experiment of 1/200 in a continuously stratified salty water tank was carried out. The suitable discharge velocity to maintain the rich nutrient in the density current layer was researched in the way of 2 and 3 dimensional flow experiments. In conclusion, the thickness of the layer of density current in Sagami Bay in the summer season was estimated to be about 12 m, and the thinning ratio of DOW in the case of using a 3 dimensional ring nozzle is from 3 to 4 times. These results are very valuable for designing the ONE that is scheduled to be set up in Sagami Bay in the year 2003.
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