首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Application of 'H Gas Turbine' Design Technology to Increase Thermal Efficiency and Output Capability of the Mitsubishi M701G2 Gas Turbine
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Application of 'H Gas Turbine' Design Technology to Increase Thermal Efficiency and Output Capability of the Mitsubishi M701G2 Gas Turbine

机译:应用“ H燃气轮机”设计技术提高三菱M701G2燃气轮机的热效率和输出能力

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Mitsubishi completed design development and verification load testing of a steam-cooled M501H gas turbine at a combined cycle power plant at Takasago, Japan in 2001. Several advanced technologies were specifically developed in addition to the steam-cooled components consisting of the combustor, turbine blades, vanes, and the rotor. Some of the other key technologies consisted of an advanced compressor with a pressure ratio of 25:1, active clearance control, and advanced seal technology. Prior to the M501H, Mitsubishi introduced cooling-steam in "G series" gas turbines in 1997 to cool combustor liners. Recently, some of the advanced design technologies from the M501H gas turbine were applied to the G series gas turbine resulting in significant improvement in output and thermal efficiency. A noteworthy aspect of the technology transfer is that the upgraded G series M701G2 gas turbine has an almost equivalent output and thermal efficiency as H class gas turbines while continuing to rely on conventional air cooling of turbine blades and vanes, and time-proven materials from industrial gas turbine experience. In this paper we describe the key design features of the M701G2 gas turbine that make this possible such as the advanced 21:1 compressor with 14 stages, an advanced premix DLN combustor, etc., as well as shop load test results that were completed in 2002 at Mitsubishi's in-house facility.
机译:三菱于2001年在日本高砂市的联合循环发电厂中完成了蒸汽冷却M501H燃气轮机的设计开发和验证负荷测试。除由燃烧器,涡轮叶片组成的蒸汽冷却组件外,还专门开发了几种先进技术。 ,叶片和转子。其他一些关键技术包括压力比为25:1的先进压缩机,主动间隙控制和先进的密封技术。在M501H之前,三菱于1997年在“ G系列”燃气轮机中引入了冷却蒸汽来冷却燃烧室衬套。最近,M501H燃气轮机的一些先进设计技术被应用于G系列燃气轮机,从而显着提高了输出和热效率。技术转让的一个值得注意的方面是,升级后的G系列M701G2燃气轮机的输出和热效率几乎与H级燃气轮机相当,同时继续依靠传统的涡轮叶片和叶片的空气冷却以及久经考验的工业材料燃气轮机经验。在本文中,我们描述了M701G2燃气轮机使之成为可能的关键设计特征,例如14级的先进21:1压缩机,先进的预混合DLN燃烧器等,以及在2007年完成的车间负荷测试结果。 2002年在三菱公司的内部工厂。

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