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GRAPH THEORETIC ANALYSIS OF ADVANCE COMBINED CYCLE POWER PLANTS ALTERNATIVES WITH LATEST GAS TURBINES

机译:带有最新燃气轮机的先进联合循环电厂替代品的图形理论分析

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In the present work, graph theory and matrix method is used to analyze some of the heat recovery possibilities with the newly available gas turbine engines. The schemes range from dual pressure heat recovery steam generation systems, to triple pressure systems with reheat in supercritical steam conditions. From the developed methodology, result comes out in the form of a number called as index. A real life operating Combined Cycle Power Plant (CCPP) is a very large and complex system. Efficiency of its components and sub-systems are closely intertwined and insuperable without taking the effect of others. For the development of methodology, CCPP is divided into six sub-systems in such a way that no sub-system is independent. Digraph for the interdependencies of sub-system is organized and converted into matrix form for easy computer processing. The results obtained with present methodology are in line with the results available in literature. The methodology is developed with a view that power plant managers can take early decision for selection, improvements and comparison, amongst the various options available, without having in-depth knowledge of thermodynamics analysis.
机译:在当前的工作中,使用图论和矩阵方法来分析新近可用的燃气轮机发动机的一些热回收可能性。该方案的范围从双压力热回收蒸汽发生系统,到在超临界蒸汽条件下再加热的三压力系统。从发达的方法学中,结果以称为索引的数字形式出现。现实生活中的联合循环发电厂(CCPP)是一个非常大而复杂的系统。它的组件和子系统的效率紧密地交织在一起,并且是不可替代的,而没有受到其他因素的影响。为了开发方法,CCPP被划分为六个子系统,这样就没有子系统是独立的。子系统相互依赖关系的有向图被组织并转换为矩阵形式,以便于计算机处理。用本方法学获得的结果与文献中可获得的结果一致。开发该方法的目的是,电厂管理人员可以在可用的各种选择中,尽早做出选择,改进和比较的决策,而无需深入了解热力学分析。

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