首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.2; 20070514-17; Montreal(CA) >NUMERICAL ASSESSMENT OF SCAP: A PASSIVE SYSTEM FOR PREVENTING THERMOACOUSTIC OSCILLATIONS IN GAS TURBINE ANNULAR COMBUSTORS
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NUMERICAL ASSESSMENT OF SCAP: A PASSIVE SYSTEM FOR PREVENTING THERMOACOUSTIC OSCILLATIONS IN GAS TURBINE ANNULAR COMBUSTORS

机译:SCAP的数值评估:一种防止燃气轮机环形燃烧器热声振荡的被动系统

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ENEL operates a dozen combined cycle units whose V94.3A gas turbines are equipped with annular combustors. In such lean premixed gas turbines, particular operation conditions could trigger large pressure oscillations due to thermoacoustic instabilities. The ENEL Research unit is studying this phenomenon in order to find out methods which could avoid or mitigate such events. The use of effective numerical analysis techniques allowed us to investigate the realistic time evolution and behaviour of the acoustic fields associated with this phenomenon. KIEN, an in-house low diffusive URANS code capable of simulating 3D reactive flows, has been used in the Very Rough Grid approach. This approach permits the simulation, with a reasonable computational time, of quite long real transients with a computational domain extended over all the resonant volumes involved in the acoustic phenomenon. The V94.3A gas turbine model was set up with a full combustor 3D grid, going from the compressor outlet up to the turbine inlet, including both the annular plenum and the annular combustion chamber. The grid extends over the entire circular angle, including all the 24 premixed burners. Numerical runs were performed with the normal V94.3A combustor configuration, with input parameters set so as no oscillations develop in the standard ambient conditions. Wide pressure oscillations on the contrary are associated with the circumferential acoustic modes of the combustor, which have their onset and grow when winter ambient conditions are assumed. These results also confirmed that the sustaining mechanism is based on the equivalence ratio fluctuation of premix mixture and that plenum plays an important role in such mechanism. Based on these findings, a system for controlling the thermoacoustic oscillation has been conceived (Patent Pending), which acts on the plenum side of the combustor. This system, called SCAP (Segmentation of Combustor Annular Plenum), is based on the subdivision of the plenum annular volume by means of a few meridionally oriented walls. Repetition of KIEN runs with a SCAP configuration, in which a suitable number of segmentation walls were properly arranged in the annular plenum, demonstrated the effectiveness of this solution in preventing the development of wide thermoacoustic oscillations in the combustor.
机译:ENEL运营着十二个联合循环装置,其V94.3A燃气轮机配备了环形燃烧器。在这种稀薄的预混燃气轮机中,由于热声的不稳定性,特定的运行条件可能会触发较大的压力振荡。 ENEL研究部门正在研究此现象,以找出可以避免或减轻此类事件的方法。有效的数值分析技术的使用使我们能够研究这种现象相关的真实时间演化和声场行为。 KIEN是一种能够模拟3D反应流的内部低扩散URANS代码,已在甚粗糙网格方法中使用。这种方法允许以合理的计算时间对相当长的真实瞬态进行仿真,并在计算范围内扩展涉及声学现象的所有共振体积。 V94.3A燃气轮机模型设置有完整的燃烧器3D网格,从压缩机出口到涡轮进口,包括环形增压室和环形燃烧室。格栅在整个圆角上延伸,包括所有24个预混燃烧器。使用正常的V94.3A燃烧器配置进行数值运行,并设置输入参数,以使在标准环境条件下不会出现振荡。相反,宽的压力振荡与燃烧器的周向声模有关,当假定冬季环境条件时,其会逐渐增大。这些结果还证实了维持机理是基于预混混合物的当量比波动,并且增压室在这种机理中起着重要作用。基于这些发现,已经构想出一种用于控制热声振荡的系统(专利申请中),该系统作用在燃烧室的气室侧。该系统称为SCAP(燃烧器环形全气室分段),它是基于通过几个子午线定向壁对气室环形容积进行细分的。重复使用SCAP配置进行的KIEN运行,其中在环形气室中适当布置了适当数量的分隔壁,证明了该解决方案在防止燃烧器中产生宽广的热声振荡方面的有效性。

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