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A Non-Isothermal Chemical Lattice Boltzmann Model Incorporating Thermal Reaction Kinetics and Enthalpy Changes

机译:结合热反应动力学和焓变的非等温化学格子Boltzmann模型

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The lattice Boltzmann method is an efficient computational fluid dynamics technique that can accurately model a broad range of complex systems. As well as single-phase fluids, it can simulate thermohydrodynamic systems and passive scalar advection. In recent years, it also gained attention as a means of simulating chemical phenomena, as interest in self-organization processes increased. This paper will present a widely-used and versatile lattice Boltzmann model that can simultaneously incorporate fluid dynamics, heat transfer, buoyancy-driven convection, passive scalar advection, chemical reactions and enthalpy changes. All of these effects interact in a physically accurate framework that is simple to code and readily parallelizable. As well as a complete description of the model equations, several example systems will be presented in order to demonstrate the accuracy and versatility of the method. New simulations, which analyzed the effect of a reversible reaction on the transport properties of a convecting fluid, will also be described in detail. This extra chemical degree of freedom was utilized by the system to augment its net heat flux. The numerical method outlined in this paper can be readily deployed for a vast range of complex flow problems, spanning a variety of scientific disciplines.
机译:格子玻尔兹曼方法是一种有效的计算流体动力学技术,可以准确地建模各种复杂系统。除单相流体外,它还可以模拟热流体力学系统和被动标量对流。近年来,随着对自组织过程的兴趣增加,它作为一种模拟化学现象的方法也受到关注。本文将介绍一种广泛使用的通用格子Boltzmann模型,该模型可以同时包含流体动力学,传热,浮力驱动的对流,被动标量对流,化学反应和焓变。所有这些效果都在物理上准确的框架中相互作用,该框架易于编码且易于并行化。除了对模型方程式的完整描述之外,还将介绍几个示例系统,以证明该方法的准确性和多功能性。还将详细描述新的模拟,该模拟分析了可逆反应对对流流体传输特性的影响。该系统利用了这种额外的化学自由度来增加其净热通量。本文概述的数值方法可以很容易地用于涵盖各种科学学科的各种复杂的流动问题。

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