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Numerical simulation of flow and aquaculture organic waste dispersion in a curved channel

机译:弯道水流和水产养殖有机废物扩散的数值模拟

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摘要

The dispersion and deposition of paniculate organic matter from a fish cage located in an idealized curved channel with a 90° bend are studied for different horizontal grid resolutions. The model system consists of a three-dimensional, random-walk particle tracking model coupled to a terrain-following ocean model. The particle tracking model is a Lagrangian particle tracking simulator which uses the local flow field, simulated by the ocean model, for advection of the particles and random walk to simulate the turbulent diffusion. The sinking of particles is modeled by imposing an individual particle settling velocity. As the homogeneous water flows through the bend in the channel, the results show that a cross-channel secondary circulation is developed. The motion of this flow is similar to a helical motion where the water in the upper layers moves towards the outer bank and towards the inner bank in the lower layers. The intensity of the secondary circulation will depend on the viscosity scheme and increases as the horizontal grid resolution decreases which significantly affects the distribution of the particles on the seabed. The presence of the secondary circulation leads to that most of the particles that settle, settle close to the inner bank of the channel.
机译:针对不同的水平网格分辨率,研究了位于具有90°弯曲的理想弯曲通道中的鱼笼中颗粒状有机质的分散和沉积。该模型系统由一个三维,随机游动的粒子跟踪模型和一个跟随地形的海洋模型组成。粒子跟踪模型是一个拉格朗日粒子跟踪模拟器,它使用海洋模型模拟的局部流场来对流平流并随机游动来模拟湍流扩散。通过施加单个颗粒沉降速度来模拟颗粒下沉。结果表明,当均匀的水流过通道中的弯头时,就形成了跨通道二次循环。该流动的运动类似于螺旋运动,在螺旋运动中,上层中的水流向外层,而下层中的流向内层。二次循环的强度将取决于粘度方案,并且随着水平网格分辨率的降低而增加,这会显着影响颗粒在海床上的分布。二次循环的存在导致大部分颗粒沉降,靠近通道内壁沉降。

著录项

  • 来源
    《Ocean Dynamics》 |2013年第10期|1073-1082|共10页
  • 作者单位

    Uni Computing, Uni Research, Thormohlenst gt. 55, 5020 Bergen, Norway,Department of Mathematics, University of Bergen, Johannes Brunsgate 12, 5008 Bergen, Norway;

    Uni Computing, Uni Research, Thormohlenst gt. 55, 5020 Bergen, Norway;

    Department of Mathematics, University of Bergen, Johannes Brunsgate 12, 5008 Bergen, Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fish farm waste; Curved channel flow; Hydrodynamic modeling; Particle tracking model;

    机译:养鱼场废物;弯曲的通道流量;流体动力学建模;粒子追踪模型;

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