首页> 外文会议>ASME power conference 2010 >HYBRID SYSTEMS FOR COOLING TURBINE INLET AIR FOR PREVENTING CAPACITY LOSS AND ENERGY EFFICIENCY REDUCTION OF COMBUSTION TURBINE SYSTEMS
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HYBRID SYSTEMS FOR COOLING TURBINE INLET AIR FOR PREVENTING CAPACITY LOSS AND ENERGY EFFICIENCY REDUCTION OF COMBUSTION TURBINE SYSTEMS

机译:混合涡轮系统,用于冷却涡轮进气,以防止燃烧涡轮系统的容量损失和能效降低

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Combustion turbines in cogeneration (combined heat & power) and combined-cycle systems are the most energy efficient systems for fossil fuel energy utilization and power generation, respectively. Therefore, for reducing carbon footprint of energy utilization and power generation, it is important to maximize the utilization of these systems. This approach allows minimization of electric energy from less energy efficient systems such as combustion turbines in simple-cycle and steam-turbine systems. When the full potentials of cogeneration and combined-cycle systems have been utilized, simple-cycle combustion systems should be used next because these are, generally, more energy efficient than the steam-turbine based power plants. Unfortunately, during hot weather just when power demand and market value/price of electric energy are high, output capacity of all combustion turbine systems decreases by as much as 30% of the rated capacity (at the ISO temperature of 59F). Hot weather also decreases the energy efficiency of all combustion turbine systems by as much as 5%. Cooling the inlet air to combustion turbines is a well recognized approach for preventing the loss of power output capacity and reduction in energy efficiency of all combustion turbine systems. Several technologies are commercially available for this application. This paper focuses on the use of hybrid cooling systems, which incorporate two or more cooling technologies (instead of a single technology) that are used in sequential processing. The paper discusses the pros and cons of the hybrid systems and includes some examples of the combustion turbine systems that have been successfully using some of the hybrid systems for turbine inlet cooling.
机译:热电联产(热电联产)和联合循环系统中的燃气轮机分别是化石燃料能源利用和发电的最节能系统。因此,为了减少能源利用和发电的碳足迹,重要的是最大化这些系统的利用。这种方法可以将能源效率较低的系统(如简单循环和蒸汽轮机系统中的燃气轮机)的电能降至最低。当利用了热电联产和联合循环系统的全部潜力时,接下来应使用简单循环燃烧系统,因为它们通常比基于蒸汽轮机的发电厂更节能。不幸的是,在炎热的天气中,恰恰在电力需求和电能的市场价格/价格很高时,所有燃气轮机系统的输出容量都会下降多达额定容量的30%(在ISO温度为59F的情况下)。炎热的天气还会使所有燃气轮机系统的能源效率降低多达5%。冷却进入燃气轮机的进气是一种众所周知的方法,用于防止功率输出能力的损失和所有燃气轮机系统能量效率的降低。几种技术可用于该应用。本文重点介绍混合冷却系统的使用,该系统结合了在顺序处理中使用的两种或多种冷却技术(而不是单一技术)。本文讨论了混合动力系统的优缺点,并列举了一些成功地将某些混合动力系统用于涡轮进口冷却的燃气轮机系统示例。

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