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A simple lattice Boltzmann scheme for low Mach number reactive flows

机译:低马赫数反应流的简单格子Boltzmann方案

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For simulating low Mach number reactive flows, a simple and coupled lattice Boltzmann (CLB) scheme is proposed, by which the fluid density can bear significant changes. Different from the existing hybrid lattice Boltzmann (HLB) scheme and non-coupled lattice Boltzmann (NCLB) scheme, this scheme is strictly lattice Boltzmann style and the fluid density couples directly with the temperature. Because it has got rid of the constraint of traditional thought in lattice Boltzmann scheme, on the basis of the equality among the particle speed c, the time step Δt and the lattice grid spacing Δx held, both c and Δt can be adjusted in this scheme according to a "characteristic temperature" instead of the local temperature. The whole algorithm becomes more stable and efficient besides inheriting the intrinsically outstanding strong points of conventional lattice Boltzmann scheme. In this scheme, we also take into account different molecular weights of species, so it is more suitable for simulating actual low Mach number reactive flows than previous work. In this paper, we simulated a so-called "counter-flow" premixed propane-air flame, and the results got by our scheme are much better than that obtained by NCLB. And the more important thing is that the exploration in this work has offered a kind of brand-new train of thought for building other novel lattice Boltzmann scheme in the future.
机译:为了模拟低马赫数反应流,提出了一种简单且耦合的格子玻尔兹曼(CLB)方案,通过该方案流体密度可以发生显着变化。与现有的混合格子Boltzmann(HLB)方案和非耦合格子Boltzmann(NCLB)方案不同,此方案严格采用格子Boltzmann样式,并且流体密度与温度直接耦合。由于摆脱了格子Boltzmann方案的传统思想的约束,因此在粒子速度c,时间步长tt和保持的格子格间距Δx之间相等的基础上,可以在该方案中调整c和Δt根据“特征温度”而不是局部温度。整个算法除了继承了传统格子Boltzmann方案固有的突出优点外,还变得更加稳定和高效。在该方案中,我们还考虑了不同种类的分子量,因此与以前的工作相比,它更适合于模拟实际的低马赫数反应流。在本文中,我们模拟了所谓的“逆流”丙烷-空气预混合火焰,我们的方案获得的结果比NCLB获得的结果要好得多。而且更重要的是,这项工作的探索为将来建立其他新颖的格子玻尔兹曼方案提供了一种崭新的思路。

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