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LARGE EDDY SIMULATION OF BUOYANT TURBULENT POOL FIRES

机译:浮力湍流池火灾的大涡模拟

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Three-dimensional large eddy simulations (LES) of two buoyant flows were performed in conjunction with a Smagorisky turbulence model. The flows included a non-reacting helium plume previously simulated with two-dimensional simulations and a methane/air turbulent diffusion flame. In comparison with the previous two-dimensional simulation results, the three-dimensional LES results for the helium plume show much better agreement with the available experimental data. A relatively simple combustion model involving Lagrangian thermal elements with a single empirical constant involving the time to burn out of notional fuel parcels was adequate for obtaining reasonable predictions of the mean velocity and vorticity fields. The model also captured the temperature distribution patterns in the methane/air diffusion flames reasonably well. The agreement between the measurements and predictions for these two flows establishes the basic capabilities of LES for buoyant fire applications.
机译:与Smagorisky湍流模型结合使用两个浮力流量的三维大涡模拟(LES)。流量包括先前用二维模拟和甲烷/空气湍流扩散火焰模拟的非反应氦羽。与前一维模拟结果相比,氦羽流的三维LES结果与可用的实验数据显示得更好。一种涉及拉格朗日热元件的相对简单的燃烧模型,其具有涉及燃烧出名燃料包的时间的单一经验常数是足以获得平均速度和涡流场的合理预测。该模型还合理地捕获了甲烷/空气扩散火焰中的温度分布图案。这两种流量的测量和预测之间的协议建立了LES对于浮力消防应用的基本功能。

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