首页> 外文会议>Eleventh Annual Conference on the CFD Society of Canada Vol.1; May 28-30, 2003; Vancouver >Validation of unsteady flamelet models for non-premixed turbulent combustion with intermittency
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Validation of unsteady flamelet models for non-premixed turbulent combustion with intermittency

机译:间歇性非预混湍流不稳定小火焰模型的验证

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Flamelets play an important role as subgrid models in large eddy simulations of turbulent flames: they are based on a one-dimensional steady asymptotic solution for the flame. The focus of the present study is to validate their use when unsteadiness and multidimensional effects are present, as to be expected for turbulent flows. To shortcut the prohibitively expansive step of solving the complete Navier-Stokes equations in the turbulent regime, a synthetic turbulent-like flow field is specified, which allows for extensive yet affordable simulations and analysis. The flow field consists of a simple steady horizontal shear with a time-periodic vertical sweep. Despite the simplicity of the flow field, the passive scalar response displays qualitatively many characteristics observed in experiments with fully turbulent flow, in particular, in terms of the strong departure from Gaussianity of its probability distribution function. The same set-up is utilized for the reactive case in order to generate challenging conditions to test the robustness of unsteady versions of the laminar flamelet models. We analyze the asymptotic behavior of the models for a large range of Damkoehler and Peclet numbers in the presence of intermittency and confirm for those demanding test-cases the good performance of the models that had been observed for less-demanding one-dimensional test-cases with smooth time behavior. In particular, the performance of the models is quite satisfactory in the intermediate regimes where neither the very fast nor the very slow chemistry asymptotic approximation would be appropriate.
机译:小火焰在湍流火焰的大型涡流模拟中作为子网格模型发挥重要作用:它们基于火焰的一维稳定渐近解。本研究的重点是在存在不稳定和多维影响时验证它们的使用,正如湍流所期望的那样。为了简化在湍流状态下求解完整的Navier-Stokes方程的极宽的步骤,我们指定了类似湍流的合成流场,从而可以进行广泛而又负担得起的模拟和分析。流场由简单的稳定水平剪切和时间周期的垂直扫描组成。尽管流场很简单,但是被动标量响应在定性条件下仍显示出许多特性,这些特性是在完全湍流的实验中观察到的,特别是在其概率分布函数与高斯的强烈偏离方面。对于反应性情况,使用相同的设置以生成具有挑战性的条件,以测试层流小火焰模型的非稳态版本的鲁棒性。我们在存在间歇性的情况下分析了大范围的Damkoehler和Peclet数的模型的渐近行为,并确认了那些要求苛刻的测试用例的良好性能,这些模型在要求较少的一维测试用例中已经观察到具有平稳的时间行为。尤其是,模型的性能在中间状态下非常令人满意,在中间状态下,无论是非常快还是非常慢的化学渐近近似都不合适。

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