湍流条件下聚合物对煤油减阻的数学模型研究

A. Alwan, Ali J. Mohammad
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引用次数: 0

摘要

本文采用计算流体动力学商业软件包程序(COMSOL 4.4)对聚合物添加剂聚异丁烯(PIB)与煤油在紊流管道中的减阻进行了数学研究。理论上采用计算方法,以长6米、宽80毫米为管径的二维几何模型计算压降,利用程序窗口工具绘制几何形状,并对流动区域进行数学模拟,将流动区域划分为非常小的部分(网格生成)。数学建模方法中使用的模型为(k-?用数学湍流模型研究管道内部流动特性。连续性和动量方程以及两个k-?利用该程序对模型方程进行了求解,得到了理论结果。理论研究中使用的变量有有效密度、有效粘度、进口速度和出口压力。边界条件为进出口速度、流动温度、压力和管壁处的速度(u=0)。理论计算表明,随着聚合物浓度和体积流量的增加,速度和减阻率增加,当体积流量为500 ??当聚合物浓度为100ppm时,压降随聚合物浓度的增加而减小。摩擦系数随聚合物浓度的增加而减小,剪应力随聚合物浓度的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MATHEMATICAL MODEL TO INVESTIGATE THE DRAG REDUCTION OF KEROSENE WITH POLYMER UNDER TURBULENT FLOW
This paper present a mathematical study on drag reduction by polymer additive suchas poly isobutylene (PIB) with kerosene in turbulent pipe flow by using computational fluiddynamic commercial package program (COMSOL 4.4) solution. Theoretically thecomputational study was used to calculate the pressure drop in two dimensions geometricmodel with 6m length and 80 mm width as a diameter of the pipe, Geometric shape has beendrawing by tools of the program windows, and to simulated the flow region mathematicallythe flow region is divide into very small parts (mesh generation). The model that used in themathematical modelling method was (k-?( mathematical turbulent model to study theinternal pipe flow properties. The continuity and momentum equations and two k-? modelequations have been solved by the program to obtain the theoretical results. There variablesthat used in the theoretical study were effective density, effective viscosity, inlet velocity,and outlet pressure. The boundary condition was inlet and outlet velocity, temperature, andpressure of flow, and the velocity (u=0) at the pipe wall. The theoretical calculations showthat the velocity and drag reduction percentage increases with polymer concentration andvolume flow rate increasing where maximum DR% is 15.8% at volume flow rate 500 ??minwith polymer concentration 100 ppm, pressure drop decreases with polymer concentrationincreasing. Friction factor decreases with polymer concentration increased, also shear stressdecrease with polymer concentration increasing.
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