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Direct numerical simulation of bubbly flow in the turbulent boundary layer of a horizontal parallel plate electrochemical reactor

机译:水平平行板电化学反应器湍流边界层中气泡流动的直接数值模拟

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We perform direct numerical simulation (DNS) of a turbulent bubble-laden channel flow of shear Reynolds number Re_τ = 131 to analyse mass transfer in a parallel plate electrochemical reactor. We set aside the electrochemical part of the problem and focus on the simulation of a turbulent channel flow of a liquid electrolyte with gas bubbles evolving from an electrode located at the bottom wall of the channel. We use an Eulerian-Lagrangian representation to simulate dispersed two-phase flow, where two-way momentum coupling between the bubbles and the electrolyte is taken into account. Three-dimensional simulations are obtained using a distributed memory parallel computer architecture. Investigations on the bubble motion due to advection and gravitational rise are carried out and the interaction of bubbles with turbulent flow structures is analysed. Furthermore, the role of the lift force acting on the bubbles is investigated. Mean volume fraction statistics are shown for validation purposes. An analysis of instantaneous flow fields and bubble distributions as well as order-of-magnitude analyses are used to determine which forces are mostly influencing the bubble dynamics and dispersion.
机译:我们对剪切雷诺数Re_τ= 131的湍流气泡通道流动进行直接数值模拟(DNS),以分析平行板电化学反应器中的传质。我们将问题的电化学部分放在一边,并专注于模拟液体电解质的湍流通道,其中气泡从位于通道底壁的电极逸出。我们使用欧拉-拉格朗日表示法来模拟分散的两相流,其中考虑了气泡和电解质之间的双向动量耦合。使用分布式内存并行计算机体系结构可以获得三维仿真。对由于对流和重力上升引起的气泡运动进行了研究,并分析了气泡与湍流结构的相互作用。此外,研究了升力作用于气泡上的作用。显示了平均体积分数统计信息以进行验证。通过分析瞬时流场和气泡分布以及量级分析,可以确定哪些力主要影响气泡的动力学和扩散。

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