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一种应用于双锥型液-液旋流器的导叶设计新方法
引用本文:何利民,田洋阳,罗小明. 一种应用于双锥型液-液旋流器的导叶设计新方法[J]. 石油学报(石油加工), 2018, 34(3): 581-591. DOI: 10.3969/j.issn.1001-8719.2018.03.019
作者姓名:何利民  田洋阳  罗小明
作者单位:中国石油大学 储运与建筑工程学院, 山东 青岛 266580
基金项目:中央高校基本科研业务费专项资金(16CX06002A)资助
摘    要:针对双锥型液 液旋流器导叶的设计问题,提出了一种新的基于空气动力学翼型的参数化造型设计方法,该新方法根据进口角、出口角等参数直接确定导叶关键点处位置,再通过Bezier曲线将关键点连接起来,形成叶型曲线。详述了新方法的导叶设计流程,推导了叶片型线方程,建立了导叶型线的参数化模型,并结合实例进行模拟验证。结果表明,新方法导叶具有以下优势:在几何特性方面,导叶型线光滑性好,具有良好的形状控制能力,且叶片型线方程中各个参数含义明确,便于有针对性地快速修改设计参数并再生模型;在流场特性方面,导叶产生流场具有更高的切向速度,并且导叶对流体的控制性好,更利于液 液分离。该新方法为轴流式液 液旋流器导叶设计与造型提供新的思路,可供工程设计使用。

关 键 词:导叶型线  气动设计法  参数化造型  Bezier曲线  
收稿时间:2017-06-14

A New Method for the Guide Vanes Design in Double-Cone Liquid-Liquid Cyclone
HE Limin,TIAN Yangyang,LUO Xiaoming. A New Method for the Guide Vanes Design in Double-Cone Liquid-Liquid Cyclone[J]. Acta Petrolei Sinica (Petroleum Processing Section), 2018, 34(3): 581-591. DOI: 10.3969/j.issn.1001-8719.2018.03.019
Authors:HE Limin  TIAN Yangyang  LUO Xiaoming
Affiliation:College of Pipeline and Civil Engineering, China University of Petroleum, Qingdao 266580, China
Abstract: Aimed at design and modeling of guide vanes of double cone liquid liquidcyclone, a new parametric design method based on aerodynamic airfoil was developed. Thekey points of curves in guide vanes were determined according to the parameters such asinlet angle, outlet angle etc., and then the curves of guide vane profiles would be formedby connecting the key points through Bezier curve. The process of new method of guidevanes design was provided, and the equations of vane profiles were deducted. The exampleguide vanes designed with the new method were verified by simulation. The new method hassome advantages. In the sense of geometry, the profiles of guide vanes are smoother toprovide a good ability of shape control. In the meanwhile, the parameters of the profilecurves have a clear meaning so the new method of parametric design could be used toquickly modify the design parameters and to regenerate the geometry model. In the sense offlow field, the tangential velocity is larger, and the fluid could be controlled well bythe guide vanes that is beneficial to liquid liquid separation. The new method provides anew thought of design and modeling of guide vanes of axial cyclone, which is available forengineering design.
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