山东大学学报 (工学版) ›› 2026, Vol. 56 ›› Issue (3): 187-192.doi: 10.6040/j.issn.1672-3961.0.2024.314
周明旭1,2,3,胡有财1,2,3,王彦伟1,2,3*
ZHOU Mingxu1,2,3, HU Youcai1,2,3, WANG Yanwei1,2,3*
摘要: 在气液两相工况下,通过优化型号Q5H26的高速离心泵,实现提升其扬程和效率的目标。对离心泵的主要部件进行三维实体建模后,通过试验验证数值模拟的可行性。针对10%含气率条件,基于多目标优化设计模型对离心泵的叶轮参数进行敏感性分析,并通过遗传算法实施优化设计,对优化后的模型进行数值模拟,计算并对比优化前后的离心泵运行效率和扬程,以评估优化效果。在气体含量为10%时,叶轮出口宽度、叶轮直径、叶片尾缘出口角及叶轮入口直径4个关键结构参数较显著影响泵的性能。在额定工况下,含气率为10%的情况时,通过优化叶轮结构参数后的模型泵的效率提高11.2%,扬程提高了1.45 m。通过这种方式,增强高速离心泵在处理含有气体的液体时的稳定性和可靠性。
中图分类号:
| [1] 丛小青, 肖建荣, 李辉, 等. 高速离心泵水动性能多目标优化设计[J]. 流体机械, 2022, 50(12): 27-34. CONG Xiaoqing, XIAO Jianrong, LI Hui, et al. Multi-objective optimization design of hydrodynamic performance of high speed centrifugal pump[J]. Fluid Machinery, 2022, 50(12): 27-34. [2] POULLIKKAS A. Two phase flow performance of nuclear reactor cooling pumps[J]. Progress in Nuclear Energy, 2000, 36(2): 123-130. [3] ZHOU L, HAN Y, LV W N, et al. Numerical calculation of energy performance and transient characteristics of centrifugal pump under gas-liquid two-phase condition[J]. Micromachines, 2020, 11(8): 728. [4] 张翔, 赖喜德, 陈小明, 等. 基于PB-NSGA-Ⅲ算法的高速离心泵叶轮性能优化研究[J]. 机电工程, 2023, 40(12): 1948-1956. ZHANG Xiang, LAI Xide, CHEN Xiaoming, et al. Performance optimization of high-speed centrifugal pump impeller based on PB-NSGA-Ⅲ algorithm[J]. Journal of Mechanical & Electrical Engineering, 2023, 40(12): 1948-1956. [5] 司乔瑞, 郭勇胜, 田鼎, 等. 半开式叶轮离心泵气液两相条件下内部流动特性分析[J]. 农业工程学报, 2021, 37(24): 30-37. SI Qiaorui, GUO Yongsheng, TIAN Ding, et al. Study on the inner flow characteristics of an inside unshroud impeller centrifugal pump under gas-liquid two phase condition[J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(24): 30-37. [6] 余俊龙, 徐茂钦, 陈显均, 等. 基于CFD的离心泵气液两相流流动特性的研究[J]. 化学工程与装备, 2023(7): 33-36. YU Junlong, XU Maoqin, CHEN Xianjun, et al. Study on flow characteristics of gas-liquid two-phase flow in centrifugal pump based on CFD[J]. Chemical Engineering & Equipment, 2023(7): 33-36. [7] JEON H, HYUN D, LEE H, et al. Optimization of blades and impellers for electric vehicle centrifugal pumps via numerical analysis[J]. Energies, 2024, 17(4): 853. [8] 李晨昊.入口含气率对混输泵性能及内部气液两相分布形态影响机理研究[D]. 西安: 西安理工大学, 2021: 7-8. LI Chenhao. Study on the influence mechanism of inlet gas content on the performance of multiphase pump and the distribution of gas-liquid two-phase in multiphase pump[D]. Xi'an: Xi'an University of Technology, 2021: 7-8. [9] MAO W B, GE J, REN B, et al. Jet centrifugal pump internal flow numerical simulation and structural optimization[J]. Journal of Physics: Conference Series, 2024, 2854(1): 012041. [10] KIM B, SIDDIQUE M H, SAMAD A, et al. Optimization of centrifugal pump impeller for pumping viscous fluids using direct design optimization technique[J]. Machines, 2022, 10(9): 774. [11] 张岁庚. 基于ICEM-CFD水力旋流器有限元模型建立方法探究[J]. 科学技术创新, 2022(21): 163-166. ZHANG Suigeng. The study of the method of creating the finite element model of hydrocyclone based on ICEM-CFD[J]. Scientific and Technological Innovation, 2022(21): 163-166. [12] YANG H H, LI K C, LIAO Z J, et al. Proppant transport in secondary sand fracturing using Eulerian-Eulerian multiphase model approach[J]. Geoenergy Science and Engineering, 2024, 241: 213186. [13] 郭嫱, 费宗岳, 黄先北. 离心泵内气液两相流研究综述[J]. 排灌机械工程学报, 2025, 43(3): 238-246. GUO Qiang, FEI Zongyue, HUANG Xianbei. Review of research on gas-liquid two-phase flow in centrifugal pumps[J]. Journal of Drainage and Irrigation Machinery Engineering, 2025, 43(3): 238-246. [14] LIAO Y X, LI J D, LUCAS D. Investigation on pool-scrubbing hydrodynamics with VOF interface-capturing method[J]. Nuclear Engineering and Design, 2022, 390: 111713. [15] 高一鸣, 刘义腾, 王冰圣, 等. 高压叶片泵流量脉动CFD模拟[J]. 液压与气动, 2023, 47(1): 160-166. GAO Yiming, LIU Yiteng, WANG Bingsheng, et al. CFD simulation of flow pulsation of high pressure vane pump[J]. Chinese Hydraulics & Pneumatics, 2023, 47(1): 160-166. [16] HAN C, LIU J Z, YANG Y, et al. Influence of blade exit angle on the performance and internal flow pattern of a high-speed electric submersible pump[J]. Water, 2023, 15(15): 2774. [17] 周路祥, 王玉勤, 韩梦乐, 等. 基于CFD的离心泵水力性能优化设计[J]. 蚌埠学院学报, 2024, 13(2): 51-56. ZHOU Luxiang, WANG Yuqin, HAN Mengle, et al. Optimization design of centrifugal pump hydraulic performance based on computational fluid dynamics[J]. Journal of Bengbu University, 2024, 13(2): 51-56. [18] 魏杰, 邵春雷, 龚兴. 基于MOP的低比转速离心泵优化设计研究[J]. 流体机械, 2024, 52(8): 61-69. WEI Jie, SHAO Chunlei, GONG Xing. Optimal design study of low specific speed centrifugal pump based on MOP[J]. Fluid Machinery, 2024, 52(8): 61-69. [19] MORO ZAMPROGNO M, ESZTERGÁR-KISS D. Sensi-tivity analysis of activity scheduling parameters with a parameter optimization framework[J]. Transportation Research Interdisciplinary Perspectives, 2024, 27: 101222. [20] 孙润稼, 朱海南, 刘玉田. 基于偏好多目标优化和遗传算法的输电网架重构[J]. 山东大学学报(工学版), 2019, 49(5): 17-23. SUN Runjia, ZHU Hainan, LIU Yutian. Transmission network reconfiguration strategy based on preference multiobjective optimization and genetic algorithm[J]. Journal of Shandong University(Engineering Science), 2019, 49(5): 17-23. [21] KHAKHALI A, NARIMAN-ZADEH N, DARVIZEH A, et al. Reliability-based robust multi-objective crashworthinessoptimisation of S-shaped box beams with parametric uncertainties[J]. International Journal of Crashworthiness, 2010, 15(4): 443-456. |
| [1] | 邵孟伟,袁世飞,周宏志,王乃华. 基于BP神经网络和遗传算法的翅片管结构优化[J]. 山东大学学报 (工学版), 2025, 55(6): 76-82. |
| [2] | 孙尚渠,张恭禄,蒋志斌,李朝阳. 盾构滚刀磨损的影响因素敏感性分析及预测[J]. 山东大学学报 (工学版), 2025, 55(1): 86-96. |
| [3] | 陈吟枫,肖晋宇,侯金鸣,江涵,赵小令,施啸寒. 基于精细化运行模拟的源-网-储协同短期扩展规划[J]. 山东大学学报 (工学版), 2024, 54(6): 156-166. |
| [4] | 李二超, 张智钊. 在线动态订单需求车辆路径规划[J]. 山东大学学报 (工学版), 2024, 54(5): 62-73. |
| [5] | 赵姣,杨倩倩,胡大伟,胡卉,李洋. 基于排队模型的电动物流车充电站选址和运输路径问题[J]. 山东大学学报 (工学版), 2024, 54(2): 47-59. |
| [6] | 孙东磊,杨思,韩学山,叶平峰,王宪,刘蕊. 高比例风电接入下计及时段间耦合旋转备用响应风险的动态经济调度方法[J]. 山东大学学报 (工学版), 2022, 52(5): 111-122. |
| [7] | 孙东磊, 鉴庆之, 李智琦, 韩学山, 王明强, 陈博, 付一木. 源网协调的电力系统均匀性规划[J]. 山东大学学报 (工学版), 2022, 52(5): 92-101. |
| [8] | 赵康,田浩,马欢,杨冬. 基于复杂网络理论的多直流馈入受端电网优化分区方法[J]. 山东大学学报 (工学版), 2022, 52(1): 128-134. |
| [9] | 宋修广,张营超,庄培芝,杨鹤,张海凤,王娟. 基于遗传算法的道路安定极限优化求解方法[J]. 山东大学学报 (工学版), 2021, 51(5): 1-7. |
| [10] | 张翠勋, 曹明见, 杨锋苓. 双层格栅桨搅拌容器内气液两相混合[J]. 山东大学学报 (工学版), 2021, 51(4): 71-76. |
| [11] | 郭蓉蓉,张汝华,马信辉,郭森垚. 近交叉口路中式快速公交站点选址优化[J]. 山东大学学报 (工学版), 2021, 51(3): 61-67. |
| [12] | 武慧虹,钱淑渠,刘衍民,徐国峰,郭本华. 精英克隆局部搜索的多目标动态环境经济调度差分进化算法[J]. 山东大学学报 (工学版), 2021, 51(1): 11-23. |
| [13] | 杨冬,王世文,王勇,陈博,郑天茹,周宁,肖天,赵雅文. 并网型风电场扩展光伏互补发电容量优化配置[J]. 山东大学学报 (工学版), 2019, 49(5): 44-51. |
| [14] | 孙润稼,朱海南,刘玉田. 基于偏好多目标优化和遗传算法的输电网架重构[J]. 山东大学学报 (工学版), 2019, 49(5): 17-23. |
| [15] | 顾雪平, 杨超, 梁海平, 王元博, 李少岩. 异步电网并行协调恢复策略的优化制定方法[J]. 山东大学学报 (工学版), 2019, 49(5): 9-16. |
|
||