首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.3; 20070514-17; Montreal(CA) >OPTIMUM OPERATION OF EXTERNALLY-FIRED MICROTURBINE IN COMBINED HEAT AND POWER GENERATION
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OPTIMUM OPERATION OF EXTERNALLY-FIRED MICROTURBINE IN COMBINED HEAT AND POWER GENERATION

机译:热电联产外燃微型燃气轮机的优化运行

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Externally-fired microturbines (EFMT) yield promising performance in small-scale utilization of biofuels. As in larger gas turbines, the part-load performance of the EFMT is very sensitive to the selected power control method, and in general subject to severe degradation at part load. The control parameters typically include the maximum combustion gas temperature or turbine inlet temperature and the speed of the shaft. At the design point, power generation efficiency can be increased by allowing a fraction of air to bypass the burner and the combustion gas - air heat exchanger. At the same time the heat exchanger size is increased. Therefore, the by-pass flow affects the optimal sizing of the EFMT as well. In this paper, the effect of by-pass flow on the part-load performance of a single-shaft EFMT in combined heat and power generation is analyzed. In the application, the microturbine is operated by the heat demand. The control methods incorporate the use of the maximum combustion gas temperature, the speed of the shaft, and the amount of by-pass air. The focus of the study is to determine the economically optimal control scheme for the engine. The economy model uses the profit flow from the EFMT as a criterion. The results show that the inclusion of the by-pass variation in the control methods can improve the economy of temperature-controlled EFMT at part load but has no benefits when using speed control.
机译:外燃微型涡轮机(EFMT)在小规模利用生物燃料方面表现出令人鼓舞的性能。与大型燃气轮机一样,EFMT的部分负载性能对所选的功率控制方法非常敏感,并且通常会在部分负载时严重退化。控制参数通常包括最大燃烧气体温度或涡轮机入口温度以及轴的速度。在设计时,通过允许一部分空气绕过燃烧器和燃气-空气热交换器,可以提高发电效率。同时增加了热交换器的尺寸。因此,旁路流量也会影响EFMT的最佳尺寸。本文分析了旁路流对热电联产单轴EFMT的部分负荷性能的影响。在应用中,微型涡轮机通过热量需求运行。控制方法包括最大燃烧气体温度,竖井速度和旁通空气量的使用。研究的重点是确定发动机的经济最优控制方案。经济模型使用来自EFMT的利润流作为标准。结果表明,在控制方法中包括旁路变化可以改善部分负载下温度控制的EFMT的经济性,但使用速度控制时则没有任何好处。

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