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Weakly compressible Lattice Boltzmann simulations of reacting flows with detailed thermo-chemical models

机译:具有详细热化学模型的反应流的弱可压缩性Lattice Boltzmann模拟

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Given the complex geometries usually found in practical applications the Lattice Boltzmann (LB) method is becoming increasingly attractive for flow simulations. In addition to the simple treatment of intricate geometrical configurations, LB solvers can be implemented on very large parallel clusters with excellent scalability. However, reacting flows lead to additional challenges and have seldom been studied by LB methods. In this study, an in-house low Mach number Lattice Boltzmann solver, ALBORZ, has been extended to take into account multiple chemical components and reactions. For this purpose, the temperature and species of each mass fraction field are modeled through separate distribution functions. The flow distribution function is assumed to be independent of temperature and species mass fractions, which is valid in the limit of weak density variations. In order to compute reaction terms as well as variable thermodynamic and transport properties, the LB code has been coupled to another library of our group, REGATH. In this manner, LB simulations with detailed chemical kinetics and thermo-chemical models become possible. Since the code is currently limited to weak density variation, its performance has been checked for a laminar premixed as well as non-premixed counter-flow Ozone/Air reacting flow, describing kinetics with 4 species and 18 elementary reactions. Comparisons of the obtained reacting flow structures with results from classical finite-difference simulations show excellent agreement. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑到通常在实际应用中发现的复杂几何形状,莱迪思·玻耳兹曼(LB)方法对于流量模拟变得越来越有吸引力。除了对复杂的几何配置进行简单处理外,LB解算器还可以在具有出色可伸缩性的超大型并行集群上实现。但是,反应流导致其他挑战,并且很少通过LB方法进行研究。在这项研究中,内部低马赫数的格子Boltzmann解算器ALBORZ已得到扩展,以考虑多种化学成分和反应。为此,通过单独的分布函数对每个质量分数场的温度和种类进行建模。假设流量分布函数与温度和物质质量分数无关,这在弱密度变化的限制内有效。为了计算反应项以及可变的热力学和传输性质,LB代码已与我们小组的另一个库REGATH耦合。以这种方式,具有详细的化学动力学和热化学模型的LB模拟成为可能。由于该规范目前仅限于弱密度变化,因此已针对层流预混和非预混逆流臭氧/空气反应流检查了其性能,描述了4种和18种基本反应的动力学。将获得的反应流结构与经典有限差分模拟结果进行的比较显示出极好的一致性。 (C)2017 Elsevier Ltd.保留所有权利。

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