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EVALUATION FOR SCALABILITY OF A COMBINED CYCLE USING GAS AND BOTTOMING SCO2 TURBINES

机译:用气体和底部CO 2汽轮机评估联合循环的可扩展性

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Bottoming cycles are drawing a real interest in a world where resources are becoming scarcer and the environmental footprint of power plants is becoming more controlled. Reduction of flue gas temperature, power generation boost without burning more fuel and even production of heat for cogeneration applications are very attractive and it becomes necessary to quantify how much can really be extracted from a simple cycle to be converted to a combined configuration. As supercritical CO_2 is becoming an emerging working fluid due not only to the fact that turbomachines are being designed significantly more compact, but also because of the fluid's high thermal efficiency in cycles, it raises an increased interest in its various applications. Evaluating the option of combined gas and supercritical CO_2 cycles for different gas turbine sizes, gas turbine exhaust gas temperatures and configurations of bottoming cycle type becomes an essential step toward creating guidelines for the question, "how much more can I get with what I have?". Using conceptual design tools for the cycle system generates fast and reliable results to draw this type of conclusion. This paper presents both the qualitative and quantitative advantages of combined cycles for scalability using machines ranging from small to several hundred MW gas turbines to determine which configurations of S-CO_2 bottoming cycles are best for pure electricity production.
机译:在资源日益匮乏且电厂的环境足迹日益受到控制的世界中,触底反弹正引起人们的真正兴趣。降低烟气温度,在不燃烧更多燃料的情况下提高发电量,甚至在热电联产应用中产生热量都是非常有吸引力的,因此有必要对从一个简单的循环中可以提取多少实际量进行转换,以转换为组合配置进行量化。由于超临界CO_2正在成为一种新兴的工作流体,这不仅是由于涡轮机的设计紧凑得多,而且由于该流体在循环中具有很高的热效率,它引起了人们对其各种应用的越来越大的兴趣。评估针对不同燃气轮机尺寸,燃气轮机废气温度和底部循环类型的配置的组合燃气和超临界CO_2循环的选择,对于制定以下问题的指导方针是必不可少的一步:“我能从中得到多少? ”。使用用于循环系统的概念设计工具可生成快速而可靠的结果,以得出此类结论。本文介绍了组合循环在定性和定量方面的优势,可使用从小型兆瓦级到几百兆瓦级燃气轮机的机器来确定可扩展性的最佳组合,以确定哪种S-CO_2底部循环的配置最适合纯电力生产。

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