论文标题
非平衡反应流动的多组分离散玻尔兹曼模型
A multi-component discrete Boltzmann model for nonequilibrium reactive flows
论文作者
论文摘要
我们为预混合,未构图或部分预混合的非平衡反应反应流的多组分离散玻尔兹曼模型(DBM)。该模型适用于有或没有化学反应和/或外力的超声波和超音速流。为DBM构建了二维16速度模型。在流体动力学限制中,DBM恢复了用于在力场中反应物种的修改后的Navier-Stokes方程。与标准的晶格玻尔兹曼模型相比,DBM不仅呈现出更准确的流体动力量,而且还详细介绍了非平衡效应,这些效应是必不可少的,却被传统的流体动力学结束了。除了传统模型中的非平衡项(粘应力和热通量)外,特定的流体动力和热力学非平衡量(高阶动力学矩及其脱离平衡)是直接从DBM中动态获得的。由于其普遍性,开发的方法适用于许多能源技术,减少排放,环境保护,采矿事故预防,化学和过程行业的广泛现象。
We propose a multi-component discrete Boltzmann model (DBM) for premixed, nonpremixed, or partially premixed nonequilibrium reactive flows. This model is suitable for both subsonic and supersonic flows with or without chemical reaction and/or external force. A two-dimensional sixteen-velocity model is constructed for the DBM. In the hydrodynamic limit, the DBM recovers the modified Navier-Stokes equations for reacting species in a force field. Compared to standard lattice Boltzmann models, the DBM presents not only more accurate hydrodynamic quantities, but also detailed nonequilibrium effects that are essential yet long-neglected by traditional fluid dynamics. Apart from nonequilibrium terms (viscous stress and heat flux) in conventional models, specific hydrodynamic and thermodynamic nonequilibrium quantities (high order kinetic moments and their departure from equilibrium) are dynamically obtained from the DBM in a straightforward way. Due to its generality, the developed methodology is applicable to a wide range of phenomena across many energy technologies, emissions reduction, environmental protection, mining accident prevention, chemical and process industry.