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海上平台立式长轴消防泵转子静力学特性分析
引用本文:张金凤,宋海勤,张帆,杨志军,赖良庆.海上平台立式长轴消防泵转子静力学特性分析[J].排灌机械工程学报,2021,39(6):541-547.
作者姓名:张金凤  宋海勤  张帆  杨志军  赖良庆
作者单位:1. 江苏大学国家水泵及系统工程技术研究中心, 江苏 镇江212013; 2. 应急管理部上海消防研究所, 上海 200032
摘    要:为了研究立式长轴消防泵转子的静力学特性,以XBC18-178-240LC3型号的立式长轴消防泵为研究对象.首先根据设计参数通过Creo建立了立式长轴消防泵内部流场的三维模型以及转子的物理模型,采用CFX对该泵在0.20Qd,0.65Qd,1.00Qd,1.20Qd,1.40Qd和1.50Qd这6种工况下进行三级泵内流场的定常数值模拟;然后把物理模型导入ANSYS Workbench中,并根据实际运行过程设置约束条件,根据模块耦合功能,将流场的模拟结果导入固体结构实现单向流固耦合,对转子模型进行了带预应力的静力学特性分析.结果表明:叶轮内部受到的流体载荷随叶轮级数增加而增大,随流量增加而减小;转子总变形量的最大值位于第三级叶轮后盖板的边缘处,等效应力与等效应变的最大值位于第三级叶轮后盖板边缘与叶片出口边的交点上,都随流量增加而减小;在0.20Qd,0.65Qd,1.00Qd和1.50Qd这4种工况下转子的最大等效应力为118.23 MPa,小于其许用应力250 MPa,符合强度要求;该泵的工作转速1 485 r/min小于其0.85倍的一阶临界转速,符合动力学设计要求.因此,在满足安全运行的工况下,XBC18-178-240LC3型号的立式长轴消防泵满足设计要求和使用要求.

关 键 词:立式长轴消防泵  转子  流固耦合  预应力  静力学特性  
收稿时间:2020-03-18

Static analysis on rotor of the vertical turbine used for offshore platforms
ZHANG Jinfeng,SONG Haiqin,ZHANG Fan,YANG Zhijun,LAI Liangqing.Static analysis on rotor of the vertical turbine used for offshore platforms[J].Journal of Drainage and Irrigation Machinery Engineering,2021,39(6):541-547.
Authors:ZHANG Jinfeng  SONG Haiqin  ZHANG Fan  YANG Zhijun  LAI Liangqing
Institution:1. National Research Center of Pumps, Jiangsu University, Zhenjiang, Jiangsu 212013, China; 2. Shanghai Fire Research Institute of Emergency Management Department, Shanghai 200032, China
Abstract:In order to investigate the static characteristics of the vertical turbine rotor, the type XBC18-178-240LC3 vertical turbine was chosen as the study object. First of all, a three-dimensional mathematical model of fluid flow in the vertical turbine and a physical model for the rotor system of the vertical turbine were generated by Creo according to design parameters and the flows of the vertical turbine with three-stages were simulated numerically by CFX under six conditions of 0.20Qd, 0.65Qd, 1.00Qd, 1.20Qd, 1.40Qd and 1.50Qd. Then, the physical model was imported into ANSYS Workbench and constraints were ad-ded to it according to the actual running environment. Finally, the numerical simulation results of flow field were imported into the physical model of the structure to realize the unidirectional fluid-structure interaction and then the static characteristics on the rotor system of the vertical turbine with the prestress were analyzed. It is demonstrated that the fluid pressure inside the impeller increases as the stage of the impeller increases and decreases as the flow increases; the maximum of the total deformation is located at the edge of the rear cover of the third-stage impeller and the maximums of the equivalent stress and equivalent strain are located at the intersection of the edge of the rear cover and the blade outlet in the third-stage impeller, which decrease with the increase of the flow; the maximum of equi-valent stress of the rotor is 118.23 MPa under four conditions of 0.20Qd, 0.65Qd, 1.00Qd and 1.50Qd, which is smaller than its allowable stress(250 MPa)and meets strength requirement;the pump′s working speed of 1 485 r/min is less than its first-order critical speed of 0.85 times, which meets the dynamic design requirement. Therefore, the vertical turbine of XBC18-178-240LC3 model meets the design and use requirements under safe operating conditions.
Keywords:vertical turbine  rotor  fluid-structure interaction  prestress  static characteristics  
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