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EFFECT OF FLOW PULSATIONS IN PREMIXED, SWIRL STABILIZED COMBUSTOR

机译:混流稳定旋流燃烧室中的脉动效应

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In the present work, a numerical model has been developed using ANSYS Fluent 14.5 to simulate the combustion phenomenon in a partially premixed, swirl-stabilized, LPG-fueled gas turbine combustor. In a practical gas turbine combustor, pulsations in the flow at the air side cannot be avoided which can lead to thermoacoustic instabilities. The primary objective of the study is to numerically analyze the effect of such pulsations on the fluid flow and combustion process inside the combustor. Different parameters like static temperature, progress variable and product formation rate are compared at the outlet plane of the combustor. The effect of change in the parameters like amplitude and frequency of the sinusoidal air flow input has also been investigated in the present study. It is observed that the solution changes from periodic to quasi-periodic at a higher amplitude condition. The numerical model was qualitatively validated against experiments performed on a laboratory-scale premixed, swirl-stabilized, gas turbine combustor.
机译:在目前的工作中,已经使用ANSYS Fluent 14.5开发了一个数值模型,以模拟部分预混,稳定涡流,以液化石油气为燃料的燃气轮机燃烧室中的燃烧现象。在实际的燃气轮机燃烧器中,无法避免空气侧流动中的脉动,这会导致热声不稳定性。该研究的主要目的是从数值上分析此类脉动对燃烧室内部流体流动和燃烧过程的影响。在燃烧器的出口平面比较了不同的参数,例如静态温度,过程变量和产品形成速率。在本研究中还研究了诸如正弦气流输入的幅度和频率之类的参数变化的影响。可以看出,在更高的振幅条件下,解从周期变化为准周期。通过在实验室规模的预混合,旋流稳定的燃气轮机燃烧器上进行的实验,对数值模型进行了定性验证。

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