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COST OPTIMIZATION OF WATER RECOVERY SYSTEMS FOR STEAM INJECTED GAS TURBINES

机译:蒸汽喷射燃气轮机水回收系统的成本优化

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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-injected gas turbine technology is the need of large amounts of fresh water that is eventually lost into the atmonosphere along with the exhaust gases. Nowadays, fresh water is not readily available in many places due to either local water shortages or environmental legislation that protects water sources from depletion and pollution. In order to deal with water constraints, water recovery systems (WRS) to recuperate the injected steam from the exhaust gases and return it to the steam injection system can be implemented. In this project, computer models for two different WRS configurations have been developed and tested. The computer models allow finding the optimum size, power requirements and capital costs of the heat exchangers involved in a particular WRS configuration. Tie models can also simulate the performance of WRS during a given period of time, calculating the energy consumed by fans and pumps in the process. This paper explains the details of the computer models and illustrates, as an example, the results obtained when both WRS configurations are applied to the GE LM2500 gas turbine. These results support the technical and economic feasibility of steam recovery for medium-size steam-injected gas turbines.
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。蒸汽喷射燃气轮机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流失到大气中。如今,由于当地水资源短缺或保护水源免于枯竭和污染的环境法规,许多地方都无法获得淡水。为了应对水的限制,可以实施水回收系统(WRS),以从废气中回收注入的蒸汽并将其返回到蒸汽注入系统。在该项目中,已经开发并测试了两种不同WRS配置的计算机模型。计算机模型允许找到特定WRS配置中涉及的热交换器的最佳尺寸,功率要求和资本成本。领带模型还可以在给定的时间内模拟WRS的性能,计算过程中风扇和泵消耗的能量。本文解释了计算机模型的详细信息,并举例说明了将两种WRS配置都应用于GE LM2500燃气轮机时获得的结果。这些结果支持了中型蒸汽喷射式燃气轮机蒸汽回收的技术和经济可行性。

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