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A Mathematical Model Development for Assessing the Engineering and Economic Improvement of Wave and Wind Hybrid Energy System

机译:波浪和风能混合能源系统工程和经济改进评估的数学模型开发

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All aspects of human life require some source of energy. Fossil fuels are predicted to be exhausted in some decades. Moreover, their consumption is known to be very harmful to all living species. Wind and wave powers, as renewable energy sources with no emissions, represent better alternatives for electricity generation. The aim of the present study is to develop a model to assess a wave-wind hybrid energy system. The idea of adding a wave energy harvester to a floating or a fixed-support wind turbine structure contributes to increase the system reliability. Thus, a mathematical model was used to assess not only the components of the wind-wave hybrid system (e.g., wind turbine, wave converter, and foundation), but also the system costs and the cost recovery period. The wave energy converter selected for the hybrid device was a Wavestar prototype combined with a wind turbine. The engineering and economic improvements of the system and associated costs were calculated. Two case studies of the proposed hybrid system in the eastern Mediterranean Sea and the North Sea were assessed. It was concluded that the annual energy production from the wind-wave hybrid device in the North Sea was 64.3% higher than that in the Mediterranean Sea. As a result, the cost of energy (in USD/kWh) in the North Sea was lower than that in the Mediterranean Sea, making the hybrid technology commercially feasible.
机译:人类生活的各个方面都需要某种能量来源。预计化石燃料将在几十年内耗尽。此外,众所周知,它们的消费对所有生物都是非常有害的。风能和波浪能作为无排放的可再生能源,是发电的更好替代方案。本研究的目的是建立一个评估波浪-风混合能源系统的模型。将波浪能收集器添加到浮动或固定支撑风力涡轮机结构中的想法有助于提高系统可靠性。因此,数学模型不仅用于评估风波混合系统的组件(例如,风力涡轮机,波转换器和基础),而且还用于评估系统成本和成本回收期。选择用于混合动力设备的波能转换器是Wavestar原型与风力涡轮机相结合。计算了系统的工程和经济改进以及相关成本。评估了在东地中海和北海提出的混合系统的两个案例研究。得出的结论是,北海风浪混合装置的年能源产量比地中海高64.3%。结果,北海的能源成本(美元/千瓦时)低于地中海的能源成本,从而使混合技术在商业上可行。

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