首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >REDUCTION IN GREENHOUSE GAS EMISSIONS IN THE POWER INDUSTRY USING COMPRESSED AIR POWER ENHANCEMENT TECHNOLOGY IN GAS TURBINES
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REDUCTION IN GREENHOUSE GAS EMISSIONS IN THE POWER INDUSTRY USING COMPRESSED AIR POWER ENHANCEMENT TECHNOLOGY IN GAS TURBINES

机译:利用燃气轮机中的压缩空气动力增强技术减少电力工业中温室气体的排放

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Environmental and supply considerations are playing a pivotal key in the economics and operation rationale behind power generation. A once fossil-fuel dependent industry is embracing renewable sources, albeit slowed by technical and economic challenges. With gas turbines comprising a large part of the world's electric generation pool, increasing the power output of the existing combined cycle plants and avoiding the use of less efficient peakers has the potential of reducing greenhouse gas emissions. Performance simulations show that compressed air injection can increase the power output of 2×1 combined cycle "F" class plants above 40 MW, equivalent to the typical output of simple cycle peaking units. Resultant total power output can be maintained while reducing pollutants, infrastructure resources, and capital cost compared to peaking plants.
机译:环境和供应方面的考虑在发电背后的经济和运行原理中起着关键性的作用。曾经依赖化石燃料的行业正在拥抱可再生资源,尽管由于技术和经济挑战而减慢了速度。由于燃气轮机占世界发电池的很大一部分,因此增加现有联合循环电厂的功率输出并避免使用效率较低的峰值器具有减少温室气体排放的潜力。性能模拟表明,压缩空气注入可以使40兆瓦以上的2×1联合循环“ F”级电厂的功率输出增加,相当于简单循环调峰装置的典型输出。与高峰电厂相比,可以维持最终的总功率输出,同时减少污染物,基础设施资源和资本成本。

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