首页> 外文期刊>Aquacultural Engineering: An International Journal >Numerical modeling and design of inflatable structures - application to open-ocean-aquaculture cages.
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Numerical modeling and design of inflatable structures - application to open-ocean-aquaculture cages.

机译:充气结构的数值建模和设计-在开放式水产养殖网箱中的应用。

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摘要

Numerical simulation and design of an inflatable open-ocean-aquaculture cage is presented using nonlinear finite element analysis of membrane structures. Numerical instability caused by the tension-only membrane has been removed by adding an artificial shell with small stiffness. The material properties of a fabric material are obtained from tensile tests in both hoop and longitudinal directions, assuming the material is anisotropic. Wrinkling, defined as an onset of compressive stress, is monitored as design criteria. The finite element model is validated using a modified beam theory for the inflatable structure by comparing the maximum deflection and stress. Good agreement is observed between the numerical and theoretical results. A full-scale cage model is created using membrane, shell, and string elements to test the stiffness and integrity of the system. The feasibility study indicates that the inflated structure has sufficient stiffness to be used as the structural support within a fish cage. Based on the parameter study, several designs are suggested..
机译:利用膜结构的非线性有限元分析方法,对开放式海洋养殖网箱进行了数值模拟和设计。通过添加具有较小刚度的人造壳,可以消除仅由张力膜引起的数值不稳定性。假设材料是各向异性的,则通过在环向和纵向两个方向上的拉伸测试获得织物材料的材料特性。将起皱(定义为压应力的起点)作为设计标准进行监控。通过比较最大挠度和应力,使用改进的梁理论对充气结构验证了有限元模型。在数值和理论结果之间观察到良好的一致性。使用膜,壳体和弦元件创建一个全尺寸笼模型,以测试系统的刚度和完整性。可行性研究表明,充气结构具有足够的刚度,可以用作鱼笼内的结构支撑。在参数研究的基础上,提出了几种设计方案。

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