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A critical discussion about optimisation approaches for ocean energy array design

机译:关于海洋能源阵列设计优化方法的关键探讨

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As the technology readiness level of ocean energy devices moves from single units to small arrays, evidence from related industries suggests the need for integrated array design tools. Those tools implement all the functionality required for assessing the economic performance, technical reliability and environmental impact of the diverse subsystems to be accounted for in the design chain. These include device hydrodynamics, design of the electrical connection to shore, moorings and foundations design, as well as logistic requirements for the installation and maintenance of the farm. This paper presents a critical discussion of approaches for optimising the solutions of such a tool when the target of the problem is to achieve the lowest Levelised Cost of Energy (LCOE) solution. Firstly, the problem is formally described, pointing out the complexity of the architecture of the models, the intervening variables and the constraints and boundary conditions of the solution space. Then, approaches for identification of lowest LCOE solutions are examined, starting from simplified one-parameter sensitivity analyses-such as, for example, interdistance among devices, and distance to shore-to more complex heuristic approaches. All the above considerations will be illustrated through examples pertinent to the ocean energy sector.
机译:随着海洋能源设备的技术准备水平从单个单元移动到小阵列,相关行业的证据表明需要集成阵列设计工具。这些工具实施了评估各种子系统的经济绩效,技术可靠性和环境影响所需的所有功能,以便在设计链中占核算。这些包括设备流体动力学,与岸边,停泊和基础设计的电气连接的设计,以及用于农场安装和维护的后勤要求。本文提出了对优化这种工具的解决方案的方法的关键讨论,当问题的目标是实现最低的能量(LCoE)解决方案的机制成本。首先,正式描述了问题,指出模型的架构的复杂性,中间变量以及解决方案空间的约束和边界条件。然后,检查用于识别最低LCoE溶液的方法,从简化的一次参数灵敏度分析开始 - 例如,设备之间的交叉间隙,以及与岸上的距离 - 更复杂的启发式方法。以上所有考虑将通过与海洋能源部门相关的例子来说明。

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