首页> 外文会议>ASME Internal Combustion Engine Division Technical Conference >GAS TURBINE/RECIPROCATING INTERNAL COMBUSTION ENGINE INTEGRATED SYSTEM FOR FUEL-FLEXIBLE, HIGH EFFICIENCY AND LOW EMISSIONS POWER GENERATION
【24h】

GAS TURBINE/RECIPROCATING INTERNAL COMBUSTION ENGINE INTEGRATED SYSTEM FOR FUEL-FLEXIBLE, HIGH EFFICIENCY AND LOW EMISSIONS POWER GENERATION

机译:燃气轮机/往复式内燃机集成系统,用于燃料柔性,高效率和低排放发电

获取原文

摘要

This paper reviews the technical approach and reports on the results of ASPEN Plus modeling of two patented approaches for integrating a gas turbine with reciprocating internal combustion engine for lower emissions and higher efficiency power generation. In one approach, a partial oxidation gas turbine (POGT) is located in the 1st stage, and the H_2-rich fuel gas from POGT exhaust is cooled and fed as main fuel to the second stage, ICE. In this case, the ICE operates in lean combustion mode. In the second approach, an ICE operates in partial oxidation mode (POX) in the 1st stage. The exhaust from the POX-ICE (a low BTU fuel gas) is combusted to drive a conventional GT in the 2nd stage of the integrated system. In both versions, use of staged reheat combustion leads to predictions of higher efficiency and lower emissions compared to independently providing the same amount of fuel to separate GT and ICE where both are configured for lean combustion. The POGT and GT analyzed in the integrated systems are based upon building them from commercially available turbocharger components (turbo-compressor and turbo-expander). Modeling results with assumptions predicting 50-52% LHV fuel to power system efficiency and supporting NO_x < 9 ppm for gaseous fuels are presented for these GT-ICE integrated systems.
机译:本文审查了关于二氯铂加模型的技术方法和报告两种专利方法,用于将燃气轮机与往复式内燃机集成,以降低排放和更高效率发电。在一种方法中,部分氧化燃气轮机(POGT)位于第1阶段,并将来自POGT废气的富含H_2的燃料气体冷却并作为主燃料作为第二级,冰。在这种情况下,冰在贫燃烧模式下操作。在第二种方法中,冰在第一阶段以部分氧化模式(POX)操作。来自POX-ICE(低BTU燃料气体)的排气燃烧以在集成系统的第二阶段驱动传统的GT。在两个版本中,与独立提供相同数量的燃料相比,使用分阶段的再热燃烧导致更高效率和较低排放的预测,其中两者都配置为贫燃烧。在集成系统中分析的POGT和GT基于从市售的涡轮增压器组件(Turbo-Compressor和Turbo-Expander)构建它们。为这些GT-ICE集成系统提出了预测50-52%LHV燃料和支持NO_X <9ppm的假设的建模结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号