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Harnessing Offshore Wind Power for Captive use at Offshore Platforms

机译:利用海上风电源的海上风力在海上平台上使用

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Climate change and the need to manage diminishing fossil fuel reserves are the two biggest challenges our planet is facing. This is where importance of renewable energy comes in picture. ONGC (Oil and Natural Gas Corporation Ltd, India) foresees this and has mandated IOGPT (Institute of Oil and Gas Production Technology), an in-house institute to carry out study for tapping offshore wind energy by installing wind turbine on the existing offshore Well Head platform/s which is on the verge of abandonment. These structures are in water depth of about 70 m. The power generated would be for captive use at offshore process/well head complexes through sub-sea cable grid. Few wells in Western Offshore oil field of ONGC are being completed on ESPs on wellhead platforms. Power will primarily be supplied by the existing gas based turbine generators on Process Platform. The power from the planned wind turbine generator will be used in the same grid. This will proportionately reduce the gas consumption and in turn the rich contents of associated gas saved from being burnt as fuel will add to our value added products. Projects completed earlier worldwide indicate cost of the foundation for any wind turbine in +45 m water depth may be more than US$ 1.1 million/MW; use of the existing structures in western offshore would amount to enormous savings in Project cost. The project envisaged is first of its kind. Preliminary works like wind resource assessment study, wave study, structural analysis of existing structures, etc. are underway. This will be a demonstration project and would be used to examine the feasibility and benefits of creating a commercial deep-water wind farm.
机译:气候变化和管理化石燃料储备减少的必要性是我们星球面临的两个最大的挑战。这是可再生能源的重要性。 ONGC(印度石油和天然气公司有限公司)预计这一点并授权IOOGPT(石油和天然气生产技术研究所),该研究所是通过在现有的海上安装风力涡轮机进行挖掘近海风能的研究所头部平台是放弃边缘的。这些结构处于水深约70米。产生的力量是通过亚海电缆网格在近海过程/井头复合物的俘虏使用。在井口平台上的ESPS中,在西海海上油田中少量井。电源将主要由过程平台上的现有气体基涡轮发电机提供。来自计划风力涡轮发电机的电力将用于相同的网格中。这将按比例降低煤气消耗,而且随着燃料所节省的相关气体的丰富含量将增加到我们的增值产品。全世界早些时候完成的项目表明,任何风力涡轮机的基础成本达到+45米的水深可能超过1210万美元/兆瓦;在西海岸中使用现有的结构将达到项目成本的巨大节省。设想的项目首先。如风资源评估研究,波浪研究,现有结构的结构分析等初步作品正在进行中。这将是一个示范项目,将用于检查创建商业深水风电场的可行性和益处。

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