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Numerical modelling of hydrodynamic responses of Ocean Farm 1 in waves and current and validation against model test measurements

机译:海洋农场1在波浪和电流中的流体动力反应的数值模型及模型试验测量的验证

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With the continuous growing of the aquaculture industry and increasingly limited fish farming sites at close to shore areas both in Norway and worldwide, there is a need to develop fish farms suitable for aquaculture production in typical offshore environments. For this purpose, SALMAR has developed and deployed the Ocean Farm 1 facility for offshore fish farming.The main purpose of this paper is to develop a reliable numerical model and investigate the motion responses of the Ocean Farm 1 structure in waves and current. The established numerical model consists of the Ocean Farm 1's frame structure (with rigidly-connected circular column components), the net and the mooring system. The hydrodynamic external loads and coefficients of the frame structure are obtained by using potential flow theory. The quadratic drag load on the individual circular columns of the frame structure is formulated by a given drag coefficient. The loads on the net are formulated by using the screen model, where the Reynold number dependent lift and drag forces are formulated as a function of the solidity ratio Sn of the net, relative inflow angle and velocity. The hydrodynamic loads on the mooring lines are formulated using the Morison's equation and the structural responses of the mooring lines are obtained using a nonlinear FE model.With the developed numerical model, time domain simulations are performed. The simulation results are firstly validated against measured data from the decay tests, current tests, and regular wave tests. After the validation, numerical simulations are performed in different irregular wave and current combined weather conditions and the obtained motion response of Ocean Farm 1 are discussed and compared with available measurement data.
机译:随着水产养殖业的持续增长,越来越有限的鱼类养殖场地,靠近挪威和全球岸边,需要开发适合在典型的离岸环境中进行水产养殖生产的鱼类农场。为此目的,Salmar已开发并部署了海洋农场1个设施,用于海上鱼类养殖。本文的主要目的是开发可靠的数值模型,并调查海浪和电流中海洋农场1结构的运动反应。建立的数值模型包括海洋农场1的框架结构(具有刚性连接的圆柱组件),网络和系泊系统。通过使用电位流理论获得框架结构的流体动力外部载荷和系数。帧结构的各个圆柱上的二次拖动负载由给定的拖动系数配制。通过使用屏幕模型配制网上的负载,其中雷诺数依赖升力和阻力被配制为净稳定比Sn的函数,相对流入角度和速度。使用摩托车的方程配制系泊线上的流体动力载荷,并且使用非线性Fe模型获得系泊线的结构响应。在开发的数值模型中,执行时域模拟。首先将仿真结果与衰减测试,当前测试和常规波检测有关的测量数据验证。在验证之后,在不同的不规则波和电流组合的天气条件下进行数值模拟,并与可用测量数据进行讨论并与可用的测量数据进行讨论的热量响应。

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