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Study and design of a hybrid wind-diesel-compressed air energy storage system for remote areas

机译:偏远地区混合风柴油压缩空气储能系统的研究与设计

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摘要

Remote areas around the world predominantly rely on diesel-powered generators for their electricity supply, a relatively expensive and inefficient technology that is responsible for the emission of 1.2 million tons of greenhouse gas (GHG) annually, only in Canada [1]. Wind-diesel hybrid systems (WDS) with various penetration rates have been experimented to reduce diesel consumption of the generators. After having experimented wind-diesel hybrid systems (WDS) that used various penetration rates, we turned our focus to that the re-engineering of existing diesel power plants can be achieved most efficiently, in terms of cost and diesel consumption, through the introduction of high penetration wind systems combined with compressed air energy storage (CAES). This article compares the available technical alternatives to supercharge the diesel that was used in this high penetration wind-diesel system with compressed air storage (WDCAS), in order to identify the one that optimizes its cost and performances. The technical characteristics and performances of the best candidate technology are subsequently assessed at different working regimes in order to evaluate the varying effects on the system. Finally, a specific WDCAS system with diesel engine downsizing is explored. This proposed design, that requires the repowering of existing facilities, leads to heightened diesel power output, increased engine lifetime and efficiency and to the reduction of fuel consumption and CHG emissions, in addition to savings on maintenance and replacement cost.
机译:世界各地的偏远地区主要依靠柴油发电机发电,这是一种相对昂贵且效率低下的技术,仅在加拿大,每年就排放120万吨温室气体(GHG)[1]。为了降低发电机的柴油消耗,已经对具有不同渗透率的风-柴油混合动力系统(WDS)进行了试验。在对使用各种渗透率的风-柴油混合动力系统(WDS)进行了试验之后,我们将重点转向通过引入以下方面,可以在成本和柴油消耗方面最有效地实现对现有柴油发电厂的重新设计。高渗透率的风能系统与压缩空气能量存储(CAES)相结合。本文比较了可用的技术替代方法来增压这种带有压缩空气存储(WDCAS)的高渗透率风柴油系统中使用的柴油,以便确定可以优化其成本和性能的柴油机。随后在不同的工作方案下评估最佳候选技术的技术特性和性能,以评估对系统的不同影响。最后,探索了一种具有柴油机小型化的特定WDCAS系统。这项提议的设计需要对现有设施进行重新供电,不仅可以节省维护和更换成本,还可以提高柴油机的动力输出,延长发动机的使用寿命和效率,并减少燃油消耗和CHG排放。

著录项

  • 来源
    《Applied Energy》 |2010年第5期|1749-1762|共14页
  • 作者单位

    Wind Energy TechnoCentre, 51 Chemin de la mine, C.P. 1300, Murdochville, Quebec, Canada G0E 1W0 Wind Energy Research Laboratory (WERL), Universite du Quebec a Rimouski, 300, allee des Ursulines, Quebec, Canada C5L 3A1 Anti-icing Materials International Laboratory (AMIL), Universite du Quebec a Chicoutimi, 555, boulevard de l'Universite, Quebec, Canada C7H 2B1;

    rnWind Energy Research Laboratory (WERL), Universite du Quebec a Rimouski, 300, allee des Ursulines, Quebec, Canada C5L 3A1 3M Laboratory - Faculty of Engineering, Lebanese University, Beirut, Lebanon;

    rnWind Energy Research Laboratory (WERL), Universite du Quebec a Rimouski, 300, allee des Ursulines, Quebec, Canada C5L 3A1;

    rnWind Energy TechnoCentre, 51 Chemin de la mine, C.P. 1300, Murdochville, Quebec, Canada G0E 1W0 Wind Energy Research Laboratory (WERL), Universite du Quebec a Rimouski, 300, allee des Ursulines, Quebec, Canada C5L 3A1 Anti-icing Materials International Laboratory (AMIL), Universite du Quebec a Chicoutimi, 555, boulevard de l'Universite, Quebec, Canada C7H 2B1;

    rnAnti-icing Materials International Laboratory (AMIL), Universite du Quebec a Chicoutimi, 555, boulevard de l'Universite, Quebec, Canada C7H 2B1;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wind energy; energy storage; compressed air; hybrid systems; diesel engine; wind-diesel; turbo-charging; turbocharger; air turbine; energy efficiency; environmental impact;

    机译:风能;储能;压缩的空气;混合动力系统;柴油发动机;风能柴油涡轮增压;涡轮增压器空气涡轮机能源效率;对环境造成的影响;
  • 入库时间 2022-08-18 00:10:23

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