首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >EXPERIMENTAL INVESTIGATION AND NUMERICAL MODELING OF HYDRODYNAMIC FORCE CHARACTERISTICS OF A HEAVING NET
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EXPERIMENTAL INVESTIGATION AND NUMERICAL MODELING OF HYDRODYNAMIC FORCE CHARACTERISTICS OF A HEAVING NET

机译:吊网水动力特性的实验研究与数值模拟

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With the increasing world demand for seafood and environmental problems in coastal aquaculture, offshore area has been increasingly expected to be utilized for aquaculture. The offshore aquaculture system has fewer effects on the surrounding marine environment through the rapid diffusion of organic wastes from the cultured fish than the coastal one. The offshore area then provides clean waters for cultured fish. On the other hand, the offshore aquaculture system is subject to the severe natural condition such as typhoon attack. Actually, in the current aquaculture system, the offshore sea cages are always submerged around 10m below the sea surface to avoid the effects of high waves and strong currents. However, the safety of the sea cage against the incident wave has seldom been examined, while that against the water current has been analyzed by model tests in tank and numerical simulation. We investigated the hydrodynamic force properties of a heaving sea cage in the previous work and its results proved that the deformation of net much affects on sea cage's motion characteristics. To study the most fundamental problem, we investigated the hydrodynamic force properties of an undeformable net in the present study. Nine net models arcarranged. These models have square-shaped frame and its inner dimensions are 216 x 216 mm. In these net models, three different twine diameters and three different twine intervals are arranged. The porosities of these models are in the range of 0.39 to 0.91. In addition, an impermeable plate model is also arranged. Forced heaving tests and wave exciting force tests are carried out on each net and plate model. Added mass and damping coefficients, as obtained by forced heaving tests, differ according to porosity of net and oscillation frequency and amplitude. Wave exciting forces, as obtained by wave exciting force tests, also differ according to porosity of net and wave slope and the forces increase with wave amplitude in higher order than one. To compare with experimental results, we theoretically calculate the hydrodynamic forces from a linearized potential flow approach supplementing the effect of porosity. In the boundary condition on the net surface, the vertical velocity to the surface is not equal to zero, but determined by the permeate coefficient of the surface.
机译:随着世界对沿海水产养殖中海鲜和环境问题的需求不断增长,人们越来越期望将近海区域用于水产养殖。与沿海鱼类相比,通过养殖鱼类中的有机废物的快速扩散,近海水产养殖系统对周围海洋环境的影响较小。然后,近海区域为养殖鱼类提供了干净的水。另一方面,近海水产养殖系统遭受诸如台风袭击的严峻自然条件。实际上,在当前的水产养殖系统中,近海海域总是淹没在海面以下约10m处,以避免海浪和强流的影响。但是,很少检查海笼对入射波的安全性,而对水流的安全性已通过水箱中的模型试验和数值模拟进行了分析。我们在先前的工作中研究了升沉的海笼的水动力特性,其结果证明网的变形对海笼的运动特性有很大影响。为了研究最基本的问题,我们在本研究中研究了不可变形网的水动力特性。九网模型弧 安排。这些型号具有方形框架,内部尺寸为216 x 216毫米。在这些网模型中,安排了三个不同的麻线直径和三个不同的麻线间隔。这些模型的孔隙率在0.39至0.91的范围内。另外,还布置了不可渗透的板模型。在每个网板模型上都进行了强制升沉测试和波浪激振力测试。通过强制升沉测试获得的附加质量系数和阻尼系数根据网孔的孔隙率以及振动频率和振幅的不同而不同。通过波浪激励力测试获得的波浪激励力也根据网的孔隙率和波浪斜率而有所不同,并且该力随波浪幅度的增加而比一个高。为了与实验结果进行比较,我们从理论上通过线性化势流方法补充了孔隙度的影响来计算流体动力。在净表面的边界条件下,到表面的垂直速度不等于零,而是由表面的渗透系数决定的。

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