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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Toward Higher Micro Gas Turbine Efficiency and Flexibility-Humidified Micro Gas Turbines: A Review
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Toward Higher Micro Gas Turbine Efficiency and Flexibility-Humidified Micro Gas Turbines: A Review

机译:迈向更高的微型燃气轮机效率和灵活性-加湿微型燃气轮机:回顾

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摘要

Micro gas turbines (mGTs) offer several advantages for small-scale combined heat and power (CHP) production compared to their main competitors, the internal combustion engines (ICEs), such as low vibration level, cleaner exhaust, and less maintenance. The major drawback is their lower electrical efficiency, which makes them economically less attractive and explains their low market penetration. Next to improving the efficiency of the components of the traditional recuperated mGT, shifting toward more innovative cycles may help enhancing the performance and the flexibility of mGTs. One interesting solution is the introduction of water in the mGT cycle either as auto-raised steam or hot liquid-preheated with the waste heat from the exhaust gases. The so-called humidification of the mGT cycle has the potential of increasing the electrical performance and flexibility of the mGT, resulting in a higher profitability. However, despite the proven advantages of rnGT humidification, only few of these engines have been experimentally tested and up to now, no cycle is commercially available. With this paper, we give a comprehensive review of the literature on research and development of humidified mGTs: we examine the effect of humidification both on the improvement of the cycle efficiency and flexibility and on the performance of the specific mGT components. Additionally, we will present the different possible layouts, both focusing on the numerical and experimental work. Finally, we pinpoint the technological challenges that need to be overcome for humidified mGTs to be viable. In conclusion, humidification of mGT cycles offers great potential for enhancing the cycle's electrical efficiency and flexibility, but further research is necessary to make the technology commercially available.
机译:与其主要竞争对手内燃机(ICE)相比,微型燃气轮机(mGT)在小规模的热电联产(CHP)生产中具有多个优势,例如低振动水平,更清洁的排气和更少的维护。主要缺点是它们的电效率较低,这使其在经济上不那么吸引人,并解释了其较低的市场渗透率。除了提高传统的回收式mGT组件的效率外,转向更具创新性的周期可能有助于增强mGT的性能和灵活性。一种有趣的解决方案是在mGT循环中引入水,既可以是自动产生的蒸汽,也可以是用废气中的废热预热的热液体。 mGT循环的所谓加湿有可能提高mGT的电气性能和灵活性,从而带来更高的盈利能力。然而,尽管rnGT加湿技术具有公认的优势,但这些发动机中只有极少数经过了实验测试,到目前为止,还没有商用的循环器。通过本文,我们对加湿的mGT的研究和开发文献进行了全面的回顾:我们研究了加湿对提高循环效率和灵活性以及对特定mGT组件的性能的影响。此外,我们将介绍各种可能的布局,重点放在数值和实验工作上。最后,我们指出要使加湿的mGT可行,必须克服的技术挑战。总之,对mGT循环进行加湿具有增强循环电效率和灵活性的巨大潜力,但要使该技术商业化,还需要进一步研究。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2018年第8期|081702.1-081702.9|共9页
  • 作者单位

    Univ Mons UMONS, Fac Engn, Dept Thermal Engn & Combust, Pl Parc 20, B-7000 Mons, Belgium;

    VUB, Fac Engn, Thermo & Fluid Dynam FLOW, Pl Laan 2, B-1050 Brussels, Belgium;

    VUB, Fac Engn, Thermo & Fluid Dynam FLOW, Pl Laan 2, B-1050 Brussels, Belgium;

    ULB, Aerothermomech Dept ATM, Ave Franklin Roosevelt 50, B-1050 Brussels, Belgium;

    VUB, Fac Engn, Thermo & Fluid Dynam FLOW, Pl Laan 2, B-1050 Brussels, Belgium;

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