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A feasibility study of an automated ocean energy-recovery system for oceanic applications

机译:海洋应用海洋自动能量回收系统的可行性研究

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摘要

Oceanic energies and Oceanic wave energy in particular is one of the most reliable sources of renewable. There has been several methods introduced regarding harnessing this type of energy and as a consequence there are various mechanisms designed, each aims to convert the energy of the Oceanic wave to a useful type of energy. The gap found in the literature survey is that the current mechanisms do not function at efficiencies than higher than 40%. This paper is focused on optimising the current design of point absorber type of a wave energy converter (WEC), which is improvised to supply energy autonomously via the remote sensors deployed within an ocean, hence feeling the gap in the performance of the current sensors which are using traditional batteries, facing difficulties regarding maintenance and life span. Applications of such WEC are in every Oceanic industry or facility installed offshore on the water or on the seabed (e.g. Oil industry, Defence technologies, Chargeable small UAVs, Submarines or other similar sorts of Marine technologies).
机译:海洋能特别是海洋波浪能是最可靠的可再生能源之一。已经介绍了几种利用这种能量的方法,因此设计了各种机制,每种机制都旨在将海浪的能量转换为有用的能量。文献调查中发现的差距是,当前的机制不能以高于40%的效率发挥作用。本文着重于优化点能量吸收器类型的波能转换器(WEC)的当前设计,该波能转换器被临时设计为通过部署在海洋中的远程传感器自动提供能量,因此感觉到电流传感器的性能存在差距。正在使用传统电池,在维护和使用寿命方面面临困难。此类WEC的应用在海上安装在水上或海底的每个海洋工业或设施中(例如,石油工业,国防技术,可充电小型无人机,潜艇或其他类似种类的海洋技术)。

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