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CFD Simulations of Hydrodynamic/Thermal Coupling Phenomena in a Bubble Column with Internals

机译:带有内部构件的鼓泡塔中流体动力/热力耦合现象的CFD模拟

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摘要

CFD simulations have been carried out in a full three-dimensional, unsteady, Eulerian framework to simulate hydrodynamiclthermal coupling in a bubble column with internals. A first part of the study, dedicated to the hydrodynamicl thermal coupling in liquid single-phase flows, showed that assuming constant wall temperature on the internals constitutes a reasonable approximation in lieu of comprehensive simulations encompassing shell flow and coolant flow together. A second part dealing with the hydrodynamics of gas-liquid flows in a bubble column with internals showed that a RNG k-s turbulence model formulation accounting for gas-induced turbulence was a relevant choice. The last part used these conclusions to build a hydrodynamicl thermal coupling model of a gas-liquid flow in a bubble column with internals. With a per-phase RNG k-s turbulence model and assuming constant wall temperature, it was possible to simulate heat transfer phenomena consistent with experimentally measured heat transfer coefficients.
机译:CFD模拟已在完整的三维非稳态欧拉框架中进行,以模拟带有内部元件的鼓泡塔中的流体动力热耦合。研究的第一部分专门研究液体单相流动中的流体动力热耦合,结果表明,假设内部的壁温恒定是合理的近似值,而不是将壳流和冷却剂流综合在一起的综合模拟。处理带有内部元件的鼓泡塔中气液流动的流体动力学的第二部分表明,考虑气体引起的湍流的RNG k-s湍流模型公式化是一个相关的选择。最后一部分利用这些结论建立了带有内部构件的鼓泡塔内气液流动的流体动力学热耦合模型。使用每相RNG k-s湍流模型并假设壁温恒定,可以模拟与实验测得的传热系数一致的传热现象。

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