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DUAL OPEN CYCLE PEAKING GAS TURBINE POWER PLANT

机译:双开循环燃气轮机发电厂

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The generation of electrical power is a complex matter that is dependent in part both on the anticipated demand and the actual amount of power required on the grid. Therefore, the amount of power being generated varies widely depending on the time of day, day of the week, and atmospheric conditions such as cold spells and heat waves. While the amount of power varies, it is recognized that maximum efficiencies are achieved by operating power generation systems at or near steady state conditions. With this in mind, there has been an increased use of gas turbine systems that may be quickly added online to the grid to provide additional power because gas turbine systems are typically well suited for being brought online quickly to provide spinning reserve or electrical generation. However, gas turbines are recognized as not being as efficient as other plant systems such as large steam plants because the gas turbine is an open cycle system where approximately 60 to 70 percent of the energy is lost as exhaust waste heat energy. One recognized method of increasing gas turbine efficiencies is to add a steam bottoming cycle to the exhaust system. However, these closed cycle systems are costly and they compromise the gas turbine's quick starting capability. This paper discusses an open bottoming cycle that is simple, cost effective and well suited for peaking power generation service. It not only substantially improves the gas turbine simple cycle plant heat rate, but also provides the opportunity to greatly reduce the NOX emissions levels with the application of a low temperature SCR.
机译:电力的产生是一个复杂的问题,部分取决于预期的需求和电网上所需的实际功率。因此,根据一天中的时间,一周中的某天以及诸如寒冷季节和热浪之类的大气条件,所产生的电量变化很大。当功率量变化时,已经认识到通过在或接近稳态条件下运行发电系统来实现最大效率。考虑到这一点,已经增加了燃气轮机系统的使用,可以将其快速在线添加到电网以提供额外的电力,因为燃气轮机系统通常非常适合快速在线以提供旋转储备或发电。但是,由于燃气轮机是一种开放式循环系统,其中约60%到70%的能量作为废气废热能损失,因此,燃气轮机的效率不如其他工厂系统(例如大型蒸汽厂)低。一种公认的提高燃气轮机效率的方法是在排气系统中增加一个汽底循环。但是,这些封闭循环系统价格昂贵,并且损害了燃气轮机的快速启动能力。本文讨论了一个简单,经济高效且非常适合峰值发电服务的开放式谷底循环。它不仅显着提高了燃气轮机的简单循环装置的热效率,而且还提供了通过使用低温SCR大大降低NOX排放水平的机会。

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