首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Combustion Chamber Steam Injection for Gas Turbine Performance Improvement During High Ambient Temperature Operations
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Combustion Chamber Steam Injection for Gas Turbine Performance Improvement During High Ambient Temperature Operations

机译:在高温环境下提高燃气轮机性能的燃烧室蒸汽喷射

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摘要

The gas turbines are generally used for large scale power generation. The basic gas turbine cycle has low thermal efficiency, which decreases in the hard climatic conditions of operation, so the cycles with thermodynamic improvement is found to be necessary. Among several methods shown their success in increasing the performances, the steam injected gas turbine cycle (ST1G) consists of introducing a high amount of steam at various points in the cycle. The main purpose of the present work is to improve the principal characteristics of gas turbine used under hard condition of temperature in Algerian Sahara by injecting steam in the combustion chamber. The suggested method has been studied and compared to a simple cycle. Efficiency, however, is held constant when the ambient temperature increases from ISO conditions to 50℃. Computer program has been developed for various gas turbine processes including the effects of ambient temperature, pressure ratio, injection parameters, standard temperature, and combustion chamber temperature with and without steam injection. Data from the performance testing of an industrial gas turbine, computer model, and theoretical study are used to check the validity of the proposed model. The comparison of the predicted results to the test data is in good agreement. Starting from the advantages, we recommend the use of this method in the industry of hydrocarbons. This study can be contributed for experimental tests.
机译:燃气轮机通常用于大规模发电。基本的燃气轮机循环具有低的热效率,这在恶劣的气候条件下会降低,因此发现有必要改善热力学的循环。在成功提高性能的几种方法中,蒸汽喷射燃气轮机循环(ST1G)包括在循环的各个点引入大量蒸汽。本工作的主要目的是通过在燃烧室中注入蒸汽来改善在阿尔及利亚撒哈拉沙漠中在坚硬温度条件下使用的燃气轮机的主要特性。已经研究了建议的方法,并将其与简单的周期进行了比较。但是,当环境温度从ISO条件升高到50℃时,效率保持恒定。已开发出用于各种燃气轮机工艺的计算机程序,包括环境温度,压力比,喷射参数,标准温度以及有无蒸汽喷射的燃烧室温度的影响。来自工业燃气轮机性能测试的数据,计算机模型和理论研究用于检验所提出模型的有效性。预测结果与测试数据的比较非常吻合。从优点开始,我们建议在烃工业中使用此方法。这项研究可以为实验测试做出贡献。

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