首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >WATER RECOVERY SYSTEMS FOR STEAM-INJECTED GAS TURBINES: SIZE OPTIMIZATION AND LIFE CYCLE SAVINGS
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WATER RECOVERY SYSTEMS FOR STEAM-INJECTED GAS TURBINES: SIZE OPTIMIZATION AND LIFE CYCLE SAVINGS

机译:蒸汽注入式燃气轮机的水回收系统:尺寸优化和生命周期节省

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Steam injection in gas turbines has been used for many years to increase the power output as well as the efficiency of the system and, more recently, to reduce the formation of NO_x during the combustion. The major drawback in steam-injection technology is the need of large amounts of fresh water that is eventually lost into the atmosphere along with the exhaust gas. This loss not only increases the operating costs of the system, but also creates other "external" costs in terms of environmental impacts. In order to take advantage of the steam-injection technology and reduce both operating costs and potential environmental impacts, water recovery systems to recuperate the injected steam from the exhaust gas can be implemented. This paper briefly describes the computer models developed at the University of Massachusetts Amherst to optimize water recovery systems. As an example, the optimum size, power requirement and capital cost for two different systems applied to the GE LM2500 gas turbine are shown. Finally, a comparative economic analysis between the costs of installing and operating a water recovery system and the costs of buying and treating water on a regular basis during the lifetime of the project is presented. The results support the economic feasibility of water recovery for mid-size steam-injected gas turbines before having introduced the external costs associated with the use of water resources.
机译:燃气涡轮机中的蒸汽喷射已经使用了很多年,以增加功率输出以及系统效率,并且最近还减少了燃烧过程中NO_x的形成。蒸汽喷射技术的主要缺点是需要大量的淡水,这些淡水最终会与废气一起损失到大气中。这种损失不仅增加了系统的运营成本,而且还会对环境造成其他“外部”成本。为了利用蒸汽喷射技术并减少运行成本和潜在的环境影响,可以实施水回收系统以从废气中回收喷射的蒸汽。本文简要介绍了马萨诸塞州阿默斯特大学开发的用于优化水回收系统的计算机模型。例如,显示了适用于GE LM2500燃气轮机的两个不同系统的最佳尺寸,功率要求和资本成本。最后,对项目生命周期内安装和运行水回收系统的成本与定期购买和处理水的成本之间进行了比较经济分析。结果证明,在引入与水资源利用相关的外部成本之前,中型蒸汽喷射燃气轮机进行水回收的经济可行性。

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