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ANALYSIS OF THE SELF-EXCITED DYNAMICS OF A HEAVY-DUTY ANNULAR COMBUSTION CHAMBER BY LARGE-EDDY SIMULATION

机译:大型环形燃烧室自激动力学的大涡模拟分析

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This paper discusses the use of LES to predict the performance of an annular combustion chamber in stable operating conditions and in presence of self-exited dynamics. The availability of high-accuracy data taken in a full-scale combustion test facility allowed an extensive validation of the prediction capability. The analysis focuses on a small size heavy duty annular gas turbine whose size allows to test and compute the entire 360° combustion chamber. The comparison with measurements confirms that, if the correct operating conditions are implemented, LES is capable to discern between stable and unstable operating conditions, as well as predict several other engineering relevant parameters, although the model is sometime affected by a limited shift in frequency. The post processing of LES results in presence of combustion dynamics is not a trivial task. Here the results of the simulations have been post-processed by means of a triple decomposition method to determine a mean flow, a deterministic unsteady flow at the main instability frequency and a turbulent stochastic flow. Such decomposition indicated the instability triggering mechanism together with the cross-talk mechanism between different components. This approach is currently used for design phase, while fuerther validation is on-going to include different geometries and operating conditions with the goal of reducing both risks and number of tests.
机译:本文讨论了使用LES预测环形燃烧室在稳定运行条件下以及存在自发动力学的情况下的性能。在全面的燃烧测试设备中获得的高精度数据的可用性允许对预测能力进行广泛的验证。分析的重点是小型重型环形燃气轮机,其尺寸可以测试和计算整个360°燃烧室。与测量值的比较证实,即使实施了正确的运行条件,LES仍能够识别稳定和不稳定的运行条件,并能够预测其他几个与工程相关的参数,尽管该模型有时会受到频率变化的限制。 LES的后处理会导致燃烧动力学变化,这并不是一件容易的事。此处,通过三重分解方法对模拟结果进行了后处理,以确定平均流量,在主不稳定频率处的确定性非稳态流量和湍流随机流量。这种分解表明不稳定触发机制以及不同组件之间的串扰机制。该方法目前用于设计阶段,同时正在进行进一步的验证,以包括不同的几何形状和操作条件,以降低风险和减少测试次数。

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