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导叶叶片数对喷水推进泵瞬态特性的影响OACSTPCD

Effect of diffuser blade number on transient characteristics of water-jet pump

中文摘要英文摘要

为揭示喷水推进泵不同导叶叶片数时的瞬态特性规律,基于DES混合模拟和FEM声学有限元方法,对喷水推进泵流场和声场进行数值模拟,并进行试验,验证了瞬态特性数值计算方法的准确性,研究了不同导叶叶片数(Z=5,6,7)对喷水推进泵推力、压力脉动、内流诱导噪声等性能的影响规律.结果表明:随着导叶叶片数增大,喷水推进泵推力先减小后增大,流量逐渐减小,转矩逐渐增大;导叶叶片数对叶轮出口压力脉动分布规律影响较小,对压力脉动主频处幅值有较大影响,轮毂处压力脉动幅值受导叶叶片数增大先减小后增大,轮缘和流道中心处幅值随着导叶叶片数增大逐渐减小;导叶叶片数变化会改变内流诱导噪声主频,增大导叶叶片数有利于降低喷水推进泵内流诱导噪声主频处幅值和总声压级.

In order to reveal the transient characteristics of water-jet pump with different diffuser num-bers,the flow field and sound field of water-jet pump were carried out based on DES hybrid simulation and FEMacoustic finite element method.The accuracy of numerical computation method on transient characteristics was verified by the experimental results.The influence of different diffuser blade numbers(Z=5,6,7)on the thrust,pressure pulsation and flow-induced noise of water-jet pump were studied.The results show that with the increase of diffuser blade number,the thrust first decreases and then increases,but the flow rate gradually decreases,and the torque gradually increases.The diffuser blade number has a relatively small influence on the distribution pattern of pressure pulsation at the im-peller outlet,but has a significant influence on the pressure pulsation amplitude at the main frequency.The pressure pulsation amplitude at the hub decreases first and then increases with the increase of dif-fuser blade numbers,while the amplitude at the rim and flow passage center gradually decreases with the number of diffuser blade increasing.The diffuser blade number affects the main frequency distribu-tion of the flow-induced noise,and the increase of the diffuser blade number is beneficial for reducing the amplitude and total sound pressure level at the main frequency of the flow-induced noise in the wa-ter-jet pumps.

李明慧;刘厚林;谈明高;吴贤芳;马皓晨

江苏大学国家水泵及系统工程技术研究中心,江苏 镇江 212013江苏大学能源与动力工程学院,江苏 镇江 212013江苏大学机械工程学院,江苏 镇江 212013

农业工程

喷水推进泵导叶数瞬态特性试验测试数值模拟

water-jet pumpdiffuser blade numbertransient characteristicsexperimental testnumerical simulation

《排灌机械工程学报》 2024 (001)

机动条件下喷水推进泵内瞬态空化机理及控制方法

14-20 / 7

国家自然科学基金资助项目(52179084,51779108);江苏省研究生科研创新计划项目(KYCX21_3357)

10.3969/j.issn.1674-8530.22.0114

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