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首页> 外文期刊>Journal of Engineering Mechanics >Hydrodynamic performance of wave-driven artificial upwelling device
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Hydrodynamic performance of wave-driven artificial upwelling device

机译:波浪驱动人工上升流装置的水动力性能

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摘要

Artificial upwelling and mixing is a new technology for enhancing open ocean mariculture using nutrient-rich deep ocean water. A wave-driven artificial upwelling device was developed based on mathematical modeling and hydraulic experiments. Results of the numerical modeling are in good agreement with hydraulic experiments. The mathematical model was applied to simulate the operation of a prototype device in typical Hawaiian waves. The prototype device consists of a buoy with a water chamber 4.0 m in diameter, a flow-controlling valve, and a long tail pipe 300 m in length and 1.2 m in diameter. This device can produce an upwelling flow of 0.62 m~3s in regular Hawaiian waves with a period of 12 s and a wave height of 1.9 m. Two analytical solutions to the simplified governing equations were also derived that provide a basis for the derivation of predictive equations, useful for preliminary engineering design and analysis.
机译:人工上升流和混合是一种使用营养丰富的深层海水增强开放海洋海水养殖的新技术。基于数学模型和水力实验开发了一种波浪驱动的人工上升流装置。数值模拟结果与水力实验吻合良好。应用该数学模型来模拟原型设备在典型夏威夷浪中的运行。原型设备由一个浮标和一个长尾管组成,该浮标具有一个直径为4.0 m的水室,一个流量控制阀和一个长尾管,该尾管的长度为300 m,直径为1.2 m。该装置在周期为12 s,波高1.9 m的规则夏威夷浪中可产生0.62 m〜3s的上升流。还导出了简化控制方程的两个解析解,它们为推导预测方程提供了基础,可用于初步工程设计和分析。

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