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CFD-BASED ANALYSIS OF THE FLOW REGIME IN THE CENTRIFUGAL MOLECULAR DISTILLATION OF A PETROLEUM ATMOSPHERIC RESIDUE

机译:基于CFD的石油大气残余物离心分子蒸馏中的流动规律分析

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The characterization of the flow in the evaporating liquid film, well distributed on the innerwall of the evaporator surface, is of paramount importance to the fluid dynamics within the moleculardistillation process performance.This work aims to investigate the effect of the different operating conditions (feed flow rateand rotor speed) at constant evaporator temperature (423.15 K) on the velocity profile in the thinliquid film of an atmospheric residue of petroleum on the evaporator surface of a centrifugalmolecular distiller. The analyses were carried out using computational fluid dynamics (CFD)simulations, making use of the commercial software ANSYS CFX 11.0 (of Ansys Inc., EUROPE)based on a finite volume method. A laminar flow model and two turbulence flow models (thestandard k-ε and the SST k-ω’ turbulence models) were considered. A comprehensive model based onthe Navier–Stokes and continuity equations represented the computational model.The simulations show an overall good agreement with the point up of molecular distillationprocess, based on the fact that the feed flow rate at the inlet of the device has an important effect onthe velocity distribution. Results suggest that the standard k-ε and the SST k-ω’ turbulence modelsare suitable for simulating evaporating liquid film in centrifugal molecular distiller. Nevertheless,small differences between the results obtained with turbulence and laminar models were found.Hence, laminar flow model is sufficient for modeling centrifugal molecular distillations. Theusefulness of the above information obtained from the CFD simulation and analysis will be elucidatedfor a modeling of a centrifugal molecular distillation process.
机译:蒸发液膜中流动的特征,均匀分布在内部 蒸发器表面的壁对于分子内的流体动力学至关重要 蒸馏工艺性能。 这项工作旨在研究不同操作条件(进料流量)的影响。 和转子转速)在恒定蒸发器温度(423.15 K)上在薄壁上的速度分布 离心蒸发器表面上的大气中石油残留物的液膜 分子蒸馏器。使用计算流体动力学(CFD)进行分析 使用商业软件ANSYS CFX 11.0(来自欧洲Ansys Inc.)进行仿真 基于有限体积法。层流模型和两个湍流模型( 考虑了标准的k-ε和SSTk-ω的湍流模型)。基于的综合模型 Navier–Stokes和连续性方程表示计算模型。 模拟表明与分子蒸馏的观点总体上吻合良好 基于设备入口处的进料流速对 速度分布。结果表明,标准的k-ε和SSTk-ω的湍流模型 适用于模拟离心分子蒸馏器中的液膜蒸发。尽管如此, 发现湍流和层流模型获得的结果之间存在微小差异。 因此,层流模型足以模拟离心分子蒸馏。这 将从CFD模拟和分析中获得的上述信息的有用性进行阐述 用于离心分子蒸馏过程的建模。

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