首页> 外文期刊>Brazilian journal of chemical engineering >A NEW COMPUTATIONAL FLUID DYNAMICS STUDY OF A LIQUID-LIQUID HYDROCYCLONE IN THE TWO PHASE CASE FOR SEPARATION OF OIL DROPLETS AND WATER
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A NEW COMPUTATIONAL FLUID DYNAMICS STUDY OF A LIQUID-LIQUID HYDROCYCLONE IN THE TWO PHASE CASE FOR SEPARATION OF OIL DROPLETS AND WATER

机译:液体水液中液体水液中的一种新型液体水液分离,用于分离油滴水和水

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摘要

A liquid-liquid hydrocyclone,so-called de-oiling equipment,was investigated for separation of oil droplets and wastewater in an Iranian petroleum unit.To generate the geometry and the mesh of the hydrocyclone Gambit software was used.Afterwards,by taking advantage of the Euler-Lagrangian principle,the governing equations covering the motion of fluid and that of particles in the hydrocyclone were solved.Initially,it was shown that the outcomes of CFD are in agreement with experimental data,and then 15 hydrocyclones with different overflow diameters,overflow lengths and input velocities were employed for more detailed analyses.The separation process through a hydrocyclone is counted as an economical process when ther is not only a low pressure drop inside the hydrocyclone,but also a high separation efficiency.As a result,regarding the mentioned criteria,the optimum hydrocyclone,whereby the highest performance of the hydrocyclone is exploited,was obtained by applying the 15 sets of CFD data to a Neural Network(NN)and then by optimizing the function generated by the NN by means of a Genetic Algorithm(GA).The innovation of this research work is the three-phase modeling.
机译:研究了液体液体水中旋流器,所谓的去油设备,用于分离伊朗石油单元中的油滴和废水。通过利用的利用求欧拉拉格朗日原理,涵盖含流体运动的控制方程及水力型中的颗粒中的颗粒。显示CFD的结果与实验数据一致,然后是具有不同溢出直径的15个氢旋流酮,采用溢出长度和输入速度用于更详细的分析。当不仅在水力型内部的低压下降时,通过水力旋流器的分离过程被计数为经济的过程,而且是一种高压下降,而且是一种高的分离效率。结果提到的标准,最佳的氢旋流器,其中利用了氢旋气的最高性能,通过施加15套CFD DA获得通过遗传算法(GA)优化NN优化由NN产生的功能进行神经网络(NN)。这项研究工作的创新是三相建模。

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