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Experimental Research on Salt-out Particle Motion and Concentration Distribution in a Vortex Pump Volute 被引量:6
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作者 GAO Bo YANG Minguan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第1期53-59,共7页
The vortex pump is suitable for salt solution transportation.But the salt-out flow mechanism in the pump has not been understood fully.Salt-out layer formation and growth rate are closely related to crystal particle m... The vortex pump is suitable for salt solution transportation.But the salt-out flow mechanism in the pump has not been understood fully.Salt-out layer formation and growth rate are closely related to crystal particle motion and concentration distribution.Study on the particle hydrodynamic characteristics in the pump volute becomes a key problem,because the crystal particles are mainly distributing in this zone after they enter the pump.Phase Doppler particle analyzer(PDPA)is used to measure the two-phase flow field in a model pump volute to get more understanding about the salt-out phenomenon.The crystal particle velocities are obtained in all three peripheral,radial and axial directions.Particle size and particle number density(PND)measurements are also performed in the experiment.Results are presented and discussed along the radial direction under different pump operating conditions,as well as various axial measurement positions.It is found that particle velocity gradient of peripheral component varies with the pump discharge.There is a turning point of relation between peripheral velocity component and discharge.Radial flow velocity curves look like a saddle shape and velocity magnitudes are changing greatly with the discharge.The non-equilibrium velocity feature between liquid and solid phase on this direction is also remarkable.Particles flow into the impeller at radial position R〈I,and the axial velocity component increases in this region.The particle size curve shows an open-up parabola distribution.The largest particles are distributing near the casing peripheral wall.As flow rate increases,accordingly PND increases.It also grows up in the axial-outward direction towards the suction cover.Crystal particle aggregation phenomenon can be revealed from the analysis of particle size and PND distribution,and the aggregation region is determined as well.Research results are helpful for optimal design of this kind of pump preventing salt-out. 展开更多
关键词 vortex pump salt-oat particle motion concentration distribution
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Effect of bionic mantis shrimp groove volute on vortex pump pressure pulsation 被引量:4
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作者 GU Yun-qing ZHANG Wen-qi +3 位作者 MOU Jie-gang ZHENG Shui-hua ZHOU Pei-jian FAN Tian-xing 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2399-2409,共11页
In order to reduce pressure pulsation of vortex pumps,the mantis shrimp was chosen as biological prototype and a bionic engineering model was developed from its abdominal segment grooves.Bionic mantis shrimp groove vo... In order to reduce pressure pulsation of vortex pumps,the mantis shrimp was chosen as biological prototype and a bionic engineering model was developed from its abdominal segment grooves.Bionic mantis shrimp groove volute vortex pump models with different numbers of grooves were developed,and numerical simulation methods were used to calculate the models to study the effects of the volute grooves on the pressure pulsation of a vortex pump.The results show that a bionic groove volute could effectively improve the pressure pulsation of a vortex pump outlet,and reduce the pressure pulsation around the pump’s tongue and other internal points.The pressure pulsation under different conditions is impacted by shaft frequency and blade frequency.The bionic groove structure has little effect on the external characteristics of the pump,but could improve the static pressure,velocity distribution,and vortex structure of the flow field.Additionally,pressure pulsation of the whole vortex pump is reduced. 展开更多
关键词 vortex pump bionic mantis shrimp groove VOLUTE pressure pulsation flow characteristic
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Effect of tongue clearance on hydraulic performance of double support vortex pump
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作者 Xiang-yang Li Wan-qiang Chen Sheng-dun Zhao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2019年第4期645-654,共10页
In order to study influence of tongue clearance on the hydraulic performance of double support vortex pump,three dimensional flow model with symmetric variable size tongue clearance was established by changing section... In order to study influence of tongue clearance on the hydraulic performance of double support vortex pump,three dimensional flow model with symmetric variable size tongue clearance was established by changing section parameter of tongue clearance,and applied to numerically simulate the steady inner flow in a vortex pump based on fixed working conditions and impeller through ANSYS FLUENT.The numerical results show the influence of tongue channel with two sections(non-uniform and uniform sections)on flow field characteristics in vortex pump.Firstly,the variation of tongue channel section changes the vortex structure distribution in circumferential flow channel.Specifically the spiral forward vortex structure in the circumferential direction shifts to large radius side with increasing tongue width.Secondly,the circumferential velocity gradient and axial pressure gradient both diminish with the increase of the tongue section,and the inlet/outlet pressure difference and velocity distribution also reduce with increasing tongue channel section.Finally,for vortex pump with non-uniform section of tongue channel,the head diminishes and the efficiency remains constant approximately with the increase of the tongue width,while the head and the efficiency both diminish for uniform section of tongue channel. 展开更多
关键词 vortex pump TONGUE CLEARANCE NON-UNIFORM flow PASSAGE Numerical simulation
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Performance of vortex pump in CFD simulations with rough walls
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作者 Wenguang Li 《International Journal of Fluid Engineering》 2025年第1期81-93,共13页
Flow passages in vortex pumps usually have rough walls.Precise consideration of wall roughness is an important issue in pump flow simulations.Numerical studies of the effects of wall roughness on the performance of vo... Flow passages in vortex pumps usually have rough walls.Precise consideration of wall roughness is an important issue in pump flow simulations.Numerical studies of the effects of wall roughness on the performance of vortex pumps are quite rare,especially with different interface models.Turbulent flows of water in a vortex pump with a specific speed of 76 are simulated using 1/8 and whole impeller fluid domains with rough walls,using the three-dimensional Reynolds-averaged Navier-Stokes equations,the standard k-εmodel,and a scalable wall function in Ansys CFX 2019 R2.Equivalent sand grain roughnesses k_(s)=0.586 and 9.38μm are determined for the chamber casing,volute,and suction pipe,and k_(s)=18.47 and 36.94μm for the impeller by using the arithmetic average roughness Ra of the materials used in the pump and the correlation between k_(s)and Ra given in the literature.The mixing loss along the interface between impeller and volute in the transient rotor model is determined.The rates of change of the head,shaft-power,and efficiency of the pump due to wall roughness are calculated.The transient rotor model with whole impeller domain and the frozen rotor model with 1/8 impeller domain for rough walls with Ra=0.1μm in the suction pipe,volute,and chamber and 3.2μm in the impeller give the most accurate predictions of pump performance compared with experimental data.The transient rotor model with whole impeller domain gives more accurate predictions of pump performance than the frozen rotor model with 1/8 impeller domain.The mixing loss rises quickly at high flow rates.The transient rotor model with whole impeller domain gives plausible predictions of the rates of change. 展开更多
关键词 wall roughness mixing loss PERFORMANCE vortex pumps vortex pump interface modelsturbulent CFD simulations
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RESEARCH ON TURBULENT FLOW WITHIN THE VORTEX PUMP 被引量:21
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作者 CHENHong-xun 《Journal of Hydrodynamics》 SCIE EI CSCD 2004年第6期701-707,共7页
Based on the standard k-ε turbulence model and the RANS equations, thefinite volume method and the SIMPLE algorithm were adopted to carry out the three-dimensionalviscous numerical simulation of the internal flow wit... Based on the standard k-ε turbulence model and the RANS equations, thefinite volume method and the SIMPLE algorithm were adopted to carry out the three-dimensionalviscous numerical simulation of the internal flow within a vortex pump in double reference frames.According to the results of numerical simulation, the internal flow in the vortex pump was analyzed,and the calculated results of blade surface pressure of the impeller were compared withexperimental results. The maximum relative error is 6.6% between calculated value and experimentalvalue of the pump head under operation conditions. 展开更多
关键词 vortex pump internal flow TURBULENCE
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Numerical Simulation and Experiment Analyses for the Gas-liquid Two-phase Vortex Pump 被引量:8
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作者 Y.Li Z.C.Zhu +2 位作者 W.Q.He Y.P.Wang B.L.Cui 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第1期47-50,共4页
Based on the gas-liquid two-phase mixture transportation test,the k-c-A;turbulence model was applied to simulate the two-phase turbulent flow in a vortex pump.By comparing the simulation and experiment results,inner f... Based on the gas-liquid two-phase mixture transportation test,the k-c-A;turbulence model was applied to simulate the two-phase turbulent flow in a vortex pump.By comparing the simulation and experiment results,inner flow features were revealed.The bubbles in the channel distribute mainly at the pressure side of the blades,and the aggregation degree of the bubbles is enhanced with an increase in inlet gas volume fraction.Experimental results indicate that the influence of the gas phase on vortex pump performance is small when the gas volume fraction is less than 10%.When the gas volume fraction contiuuously increases to 15%,the characteristic curves abruptly drop due to the gas blocking phenomenon. 展开更多
关键词 vortex pump gas-liquid two-phase flow numerical simulation performance test
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Effect of blade shape on hydraulic performance and vortex structure of vortex pumps 被引量:2
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作者 Ya-ping Ju Si Liu Chu-hua Zhang 《Journal of Hydrodynamics》 SCIE EI CSCD 2018年第3期499-506,共8页
The vortex pump has increasingly become an important alternative or supplement to the centrifugal pump, the positive displacement pump and the diffusion pump due to its capacity of developing a high head at a small fl... The vortex pump has increasingly become an important alternative or supplement to the centrifugal pump, the positive displacement pump and the diffusion pump due to its capacity of developing a high head at a small flow rate within a single stage. However, the vortex pumps with various blade shapes such as the twisted blades or the 3-D blades are not well studied. In this paper, some new concepts of the 2-D and 3-D corner blades are introduced for the design of the vortex pumps. The mechanism behind the effect of the corner blade shapes on the pump hydraulic performance is numerically investigated and elucidated in terms of the internal vortex structures. The results show that both 2-D and 3-D forward corner blades can induce stronger well-organized longitudinal vortices as well as smaller axial and radial vortices within the impeller blade passage, which benefit a higher pump head and a higher efficiency in comparison with the traditional radial straight blade. This study provides useful guidelines for the design of advanced vortex pumps. 展开更多
关键词 vortex pump corner blade hydraulic performance vortex structure CFD simulation
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Experimental study on inlet vortex in pump sump
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作者 SONG Xijie LIU Chao 《排灌机械工程学报》 EI CSCD 北大核心 2019年第9期769-775,共7页
In order to study the mechanism of the vortex generation at the bottom of the pump sump below the flare tube,twenty pressure pulsation monitoring points were arranged at the bottom of the pump sump below the flare tub... In order to study the mechanism of the vortex generation at the bottom of the pump sump below the flare tube,twenty pressure pulsation monitoring points were arranged at the bottom of the pump sump below the flare tube,and the pressure fluctuation experiments were carried out under different flow conditions.The experimental results show that the frequency of pressure fluctuation at the bottom of the pump sump is twice of the rotational frequency of the impeller blade.The vortex below the flare tube is easy to generate under the large flow conditions and mainly concentrates at the right front position below the flare tube.The position of the vortex occurring is corresponding to the position of the low-pressure region below flare tube. 展开更多
关键词 AXIAL-FLOW pump pump SUMP vortex pressure FLUCTUATION model experiment
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不同转速工况下喷水推进泵的空化流动试验研究
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作者 龙云 郑凯旋 +2 位作者 万初瑞 蔡佑林 王宗龙 《哈尔滨工程大学学报》 北大核心 2026年第2期281-289,共9页
为了研究喷泵在不同转速下的空化流动现象和涡结构的干涉机理,本文基于喷泵闭式试验台在不同转速下的空化性能试验得到了喷泵在不同转速下的空化性能曲线,利用高速摄影技术获得了喷泵在不同转速工况在不同空化发展程度下的空化涡结构的... 为了研究喷泵在不同转速下的空化流动现象和涡结构的干涉机理,本文基于喷泵闭式试验台在不同转速下的空化性能试验得到了喷泵在不同转速下的空化性能曲线,利用高速摄影技术获得了喷泵在不同转速工况在不同空化发展程度下的空化涡结构的可视化图片。分析了各转速下喷水推进泵空化涡结构随空化发展的演变规律,讨论了转速对喷泵空化形态演变的影响。结果表明:转速的减小使喷泵空化发展的有效汽蚀余量值域范围变大,延缓了喷泵空化发展过程;转速的减小削弱了主流对涡结构的作用,改变了叶片对空化涡结构切割频率,对不同转速工况下的空化流动结构在运动位移和溃灭点的位置上形成差异。 展开更多
关键词 喷水推进泵 不同转速 高速摄影技术 空化性能试验 空化涡结构 空化演变规律 混流泵 不同空化工况 临界空化工况
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离心泵气液两相流噪声特性分析
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作者 谈明高 王昊晨 +3 位作者 刘厚林 吴登昊 吴江海 吴贤芳 《哈尔滨工程大学学报》 北大核心 2026年第2期357-364,共8页
为探究离心泵在气液两相工况下内场噪声机理,本文采用SST k-ω模型结合MUSIG两相流模型模拟泵内气液两相流得到声源,应用声学有限元方法求解Helmholtz波动方程得到声场,对泵内气液两相流噪声进行了研究,分析了不同流量对泵内两相流动噪... 为探究离心泵在气液两相工况下内场噪声机理,本文采用SST k-ω模型结合MUSIG两相流模型模拟泵内气液两相流得到声源,应用声学有限元方法求解Helmholtz波动方程得到声场,对泵内气液两相流噪声进行了研究,分析了不同流量对泵内两相流动噪声声压级频域特性、总声压级特性和声压级分布特性的影响规律。研究结果表明:不均匀的气液两相流动和叶轮与隔舌的动静干涉作用是泵内气液两相流噪声的2个主要噪声源;蜗壳内各监测点的噪声总声压级与其所处断面面积呈反比关系;除了隔舌处,泵内其他位置的总声压级随着流量的增加均呈现不同程度的增加趋势,当流量从小流量增加到设计流量时,增幅分别为0.31%、0.67%、0.15%、0.48%和0.33%,进一步增加为大流量时,增幅为0.25%、0.20%、1.86%、0.10%和0.71%;叶频处离心泵内高声压级区主要位于隔舌附近的蜗壳螺旋段及叶轮出口区域,且叶轮内噪声声压级会整体上随着流量的增加而逐渐增大。 展开更多
关键词 离心泵 气液两相流 涡结构 试验测试 声源强度 内流噪声 计算流体力学 计算声学
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吸入涡和淹没深度对离心泵压力脉动及振动的影响
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作者 刘博星 冯建军 +3 位作者 沈博涵 朱国俊 王李科 罗兴锜 《水利学报》 北大核心 2026年第2期306-318,共13页
泵站在低水深情况运行不可避免地引入吸入涡,导致强烈的水力激振,威胁泵站安全运行。本研究基于立式离心泵试验平台,通过试验方法探究了不同淹没深度下离心泵吸入涡诱发的压力脉动与振动特性,采用高速摄像捕捉了11种不同淹没深度下的吸... 泵站在低水深情况运行不可避免地引入吸入涡,导致强烈的水力激振,威胁泵站安全运行。本研究基于立式离心泵试验平台,通过试验方法探究了不同淹没深度下离心泵吸入涡诱发的压力脉动与振动特性,采用高速摄像捕捉了11种不同淹没深度下的吸入涡形态演变规律,并同步采集了压力脉动和振动信号。结果表明:当淹没深度低于临界值时,吸入涡从稳定贯通态逐渐发展为携气破碎态,涡核尺度增大且稳定性降低。压力脉动分析显示,低淹没深度下吸入涡诱导的低频脉动取代叶频成为主导频率,峰峰值提升62%,且最大峭度增至5.2,流动冲击性显著增强。振动信号特征表明,轴向振动幅值随淹没深度降低增长90%,径向振动的非对称性随淹没深度降低而加剧。传递熵分析证实低频压力脉动是振动加剧的主要激励源。本研究通过高速摄像捕捉涡形态并同步采集压力脉动和振动信号的创新方法,系统揭示了吸入涡演化周期与低频水力激振的耦合机制,为泵站振动预警与安全运行控制提供直接理论依据。 展开更多
关键词 泵站 吸入涡 淹没深度 压力脉动 振动
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基于气液两相流数值模拟旋涡吸气对水泵性能影响研究
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作者 周扬 王福生 +1 位作者 单体伟 宋希杰 《大电机技术》 2026年第1期65-71,共7页
引黄泵站进水池内易产生表面旋涡,加之水体含沙量较高,会进一步恶化机组运行条件,严重影响泵站的安全与效率。为探究含沙水体中表面旋涡对水泵性能的影响机制,本研究采用气液两相流数值模拟方法,对双吸离心泵在吸气工况下的运行特性进... 引黄泵站进水池内易产生表面旋涡,加之水体含沙量较高,会进一步恶化机组运行条件,严重影响泵站的安全与效率。为探究含沙水体中表面旋涡对水泵性能的影响机制,本研究采用气液两相流数值模拟方法,对双吸离心泵在吸气工况下的运行特性进行模拟分析。重点研究了泵内部流场结构、叶轮内瞬态流速分布以及水泵扬程的变化规律。结果表明,离心泵内部流动稳定性及能量性能与表面旋涡的演化过程呈现显著耦合关系:随着叶轮吸气量的增加,流道内低速区范围扩大,流场稳定性下降,泵扬程随之降低;当旋涡发展至成熟阶段时,叶轮吸气量与泵扬程呈现周期性波动特征。研究成果可为高含沙水源条件下泵站的优化设计与安全运行提供理论参考。 展开更多
关键词 双吸离心泵 表面旋涡 水泵性能 数值模拟 吸气扰动
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增设底隔板对排涝泵站进水系统涡流特性影响的CFD分析
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作者 闫亚东 《吉林水利》 2026年第2期32-38,共7页
排涝泵站在工程建设及运行中的流态不均与附涡问题,可通过优化设计最大程度地减少水力损失。本文以北京顺义城南新河排涝泵站为研究对象,基于计算流体力学(CFD)方法开展内部流场分析与底隔板优化研究。首先,对典型运行工况下的全局流线... 排涝泵站在工程建设及运行中的流态不均与附涡问题,可通过优化设计最大程度地减少水力损失。本文以北京顺义城南新河排涝泵站为研究对象,基于计算流体力学(CFD)方法开展内部流场分析与底隔板优化研究。首先,对典型运行工况下的全局流线、表面与底部漩涡、不同高程截面速度及预旋角分布进行分析,识别出1#、4#、5#泵坑底部存在强附底涡、5#流道入口处出现明显旋涡区等主要水力问题,随后在泵坑底部增设底隔板,开展优化模型计算与对比分析。结果表明,防旋措施可有效削弱底部回流与切向速度分量,消除附底涡,改善泵前来流的对称性和均匀性,使吸入口预旋角稳定在±5°以内,流体在进入叶轮前呈近似轴向入流状态,建议在工况设计中优化防旋板,以增加工程安全阈值。 展开更多
关键词 排涝泵站 CFD 防旋 优化
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Numerical Investigation on the Influence of Nozzle Lip Thickness on the Flow Field and Performance of an Annular Jet Pump 被引量:6
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作者 Long-Zhou Xiao Xin-Ping Long Xue-Long Yang 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第3期59-67,共9页
The performance of an annular jet pump( AJP) is determined by its area ratio A( ratio of cross sectional area of throat and annular nozzle) and flow rate ratio q( ratio of primary and secondary flow rate,Qs/Qj),while ... The performance of an annular jet pump( AJP) is determined by its area ratio A( ratio of cross sectional area of throat and annular nozzle) and flow rate ratio q( ratio of primary and secondary flow rate,Qs/Qj),while the nozzle lip thickness is neglected in the present studies. This paper presents a study on the effect of the thickness on the flow field and performance of an AJP with A = 1. 75. With the increasing flow rate ratio and nozzle lip thickness,a small vortex forms at the nozzle lip and keeps on growing. However,as the flow rate ratio or nozzle lip thickness is extremely low,the vortex at the lip vanishes thoroughly. Moreover,the recirculation width varies conversely with the nozzle lip thickness when the flow rate ratio q ≤ 0. 13. While the deviation of the recirculation width with different nozzle lip thickness is negligible with q ≥ 0. 13. Additionally the existence of nozzle lip hinders the momentum exchange between the primary and secondary flow and leads to a mutation of velocity gradient near the nozzle exit,which shift the recirculation downstream. Finally,based on the numerical results of the streamwise and spanwise vortex distributions in the suction chamber, the characteristics of the mixing process and the main factors accounting for the AJP performance are clarified. 展开更多
关键词 annular jet pump nozzle lip recirculation streamwise vortex spanwise vortex
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采用Liutex涡识别法的水泵水轮机S区内流特性分析 被引量:2
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作者 肖业祥 肖微 +2 位作者 任绍成 陈柳 刘子实 《水力发电学报》 北大核心 2025年第1期135-142,共8页
为探究水泵水轮机S特性出现的原因,首先将数值预测的特性曲线与模型试验进行了对比分析,然后基于Liutex涡识别法分析了各过流部件在S特性区的流动和涡旋分布情况,探讨了S区相同转速不同流量工况下的内部流动变化规律。分析发现:相同转... 为探究水泵水轮机S特性出现的原因,首先将数值预测的特性曲线与模型试验进行了对比分析,然后基于Liutex涡识别法分析了各过流部件在S特性区的流动和涡旋分布情况,探讨了S区相同转速不同流量工况下的内部流动变化规律。分析发现:相同转速下水轮机工况蜗壳内的流动稳定性较好,几乎没有涡旋出现;导叶和转轮域内流动较为均匀,只在无叶区分布有少量涡旋,水流稳定性较好。制动工况蜗壳内流动开始变得较不稳定,涡旋集中分布在蜗壳出口环面上,容易形成涡团阻碍水流进入固定导叶;在导叶叶栅间存在明显的涡旋和回流现象,导叶和转轮的叶栅堵塞较为严重。反水泵工况在尾水管出口出现螺旋状回流,导致流入转轮的水流发生旋转失速等不稳定现象;水流一部分在活动导叶进水边沿圆周方向高速流动,存在严重的流动分离现象,涡旋分布最密集,由于无叶区内存在压力突变区,导致涡旋几乎占据整个流道。 展开更多
关键词 可逆式水泵水轮机 Liutex涡识别法 S特性区 涡旋特征
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吸入涡演化对立式离心泵水力稳定性的影响 被引量:1
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作者 冯建军 崔文豪 +3 位作者 朱国俊 戈振国 赵天齐 闫思娜 《农业工程学报》 北大核心 2025年第12期70-76,共7页
泵站进水池中形成的吸入涡影响泵站安全稳定运行。为研究不同工况下吸入涡形态及其演化过程对离心泵稳定性的影响,该文通过高速摄影技术捕捉不同流量下吸入涡的发展形态,并结合数值模拟对大流量工况下吸入涡的演化过程和泵内压力脉动特... 泵站进水池中形成的吸入涡影响泵站安全稳定运行。为研究不同工况下吸入涡形态及其演化过程对离心泵稳定性的影响,该文通过高速摄影技术捕捉不同流量下吸入涡的发展形态,并结合数值模拟对大流量工况下吸入涡的演化过程和泵内压力脉动特性展开研究。结果表明:试验过程中,吸入涡稳定存在的时间随着流量的增大而增加,在大流量工况下(流量Q=15.6 m^(3)/h),由于大尺度气泡脱落吸入涡投影面积产生剧烈波动;数值模拟捕捉到的吸入涡发展路径与试验结果基本吻合;在吸入涡由发展阶段向保持阶段演化时,含气率迅速增大致使气泡团聚集在叶轮流道内,从而导致保持阶段的叶片吸力面压力脉动变化范围为发展阶段的2倍,压力脉动主频由转频变为2倍转频,且随气相作用的增强,2倍转频处的压力脉动幅值沿流动方向不断增大,不均匀进气也致使叶轮径向力向正Y侧发生偏移;气泡运动至蜗舌附近时引发局部高湍动能分布;无叶区、导叶和蜗壳在靠近蜗舌方位的压力脉动峰峰值增幅最大,分别增加了59%、57%和58%,影响离心泵的稳定运行。研究结果可为后续开展吸入涡结构抑制研究、提升泵站运行稳定性提供理论参考。 展开更多
关键词 离心泵 吸入涡 气液两相流动 水力稳定性 压力脉动
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Performances and Rotating Flows of Rotary Jet Pump 被引量:1
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作者 Keiichi Komaki Toshiaki Kanemoto Kenji Sagara 《Open Journal of Fluid Dynamics》 2012年第4期375-379,共5页
The rotary jet pumps, namely the pitot pumps, are composed of the rotating casing with the impeller channels and the stationary pick-up tube for discharging, are known as the one of high pressure pumps in the U.S. mar... The rotary jet pumps, namely the pitot pumps, are composed of the rotating casing with the impeller channels and the stationary pick-up tube for discharging, are known as the one of high pressure pumps in the U.S. market. The pumps, however, have been prepared experientially, because of poor knowledge for the flow conditions and the pump performances. Then, this paper discusses the pump performances and the internal flow conditions in the rotating casing. Three types of the pick-up tube were prepared for the experiments to know the pump performances and the flow conditions in the rotating casing. The flow in the rotating casing is nearly in the forced vortex type and gives the higher pressure at the pick-up tube inlet. The more cross-sectional area of the pick-up tube channel is large, the more head and discharge are higher with excellent efficiency. Moreover, the authors confirmed that the secondary flow runs toward the rotating center at the wake flow region behind the pick-up tube. 展开更多
关键词 Rotation CASING Type pump Pitot pump High Pressure pump PICK-UP Tube FORCED vortex Secondary Flow
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河道型电站和泵站进水口入流漩涡研究与应用 被引量:2
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作者 黄智敏 李焕姗 +2 位作者 朱文音 付波 陆汉柱 《广东水利电力职业技术学院学报》 2025年第3期1-5,共5页
根据5座水电站和泵站进水口水力模型试验研究成果,介绍其进水口水面漩涡形态、可能产生的影响、防涡工程措施和工程应用等。着重对模型进水口水面漩涡与原型进水口实际状况的相似性进行分析,结果表明:1)当模型进水口水面只出现弱环流和... 根据5座水电站和泵站进水口水力模型试验研究成果,介绍其进水口水面漩涡形态、可能产生的影响、防涡工程措施和工程应用等。着重对模型进水口水面漩涡与原型进水口实际状况的相似性进行分析,结果表明:1)当模型进水口水面只出现弱环流和微凹小漩涡,且入流雷诺数Rem≥3×104时,其漩涡形态可以较真实地反映出原型进水口的实际状况;2)当模型进水口水面出现间歇串通漩涡、漏斗状串通漩涡时,进水口设置防涡设施后,为了确保工程安全运行,建议将模型进水口在Rem≥5×104条件下进行试验研究,以防不测。该成果可供类似工程试验研究、设计和运行参考。 展开更多
关键词 电站 泵站 进水口 防涡 试验研究
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水泵水轮机低负荷区流动及熵产特性研究 被引量:3
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作者 王子瑞 张军智 +2 位作者 谢永兰 王李科 金东兵 《水力发电学报》 北大核心 2025年第7期131-139,共9页
为了适应新型电力系统的调节需求,水泵水轮机需要在更宽广的负荷范围内运行,在低负荷运行时会导致机组的性能下降,影响安全稳定运行。因此以原型水泵水轮机为研究对象,采用数值模拟的方法研究了不同运行负荷下水泵水轮机的内部流动特性... 为了适应新型电力系统的调节需求,水泵水轮机需要在更宽广的负荷范围内运行,在低负荷运行时会导致机组的性能下降,影响安全稳定运行。因此以原型水泵水轮机为研究对象,采用数值模拟的方法研究了不同运行负荷下水泵水轮机的内部流动特性,采用熵产理论分析了运行负荷与能量损失和流动结构的关系。结果表明,熵产损失以脉动熵产为主,负荷下降后,相对液流角下降,在转轮叶片进口的流动分离形成低速区,在50%负荷工况低流速区在转轮内交替出现,并且在叶片进口沿周向出现了涡结构,阻塞水流进入流道,导致转轮内熵产损失和占比均明显增加。转轮出口水流的切向速度与尾水管涡带的形成有密切关系,随着负荷减小,切向速度逐渐增大,流进入尾水管后周向运动趋势增强,涡带从柱状涡带发展为螺旋形涡带,并且在深度低负荷区转变为双螺旋涡带。研究成果为抽水蓄能电站安全稳定运行提供理论支撑。 展开更多
关键词 水泵水轮机 熵产理论 低负荷 涡带 流场
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空化工况下喷水推进泵内涡结构的时空演化
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作者 赵斌娟 宋英南 +2 位作者 黄忠富 付燕霞 陈汇龙 《排灌机械工程学报》 北大核心 2025年第2期116-123,共8页
为揭示混流式喷水推进泵在空化工况下内部涡结构的演化情况,在空化数为0.142的工况下使用Ω涡识别方法对其内部涡结构进行识别和研究,在此基础上研究了空化对涡结构特征演化的影响,并分析了1个周期内涡量运输方程各项对涡结构演化的贡献... 为揭示混流式喷水推进泵在空化工况下内部涡结构的演化情况,在空化数为0.142的工况下使用Ω涡识别方法对其内部涡结构进行识别和研究,在此基础上研究了空化对涡结构特征演化的影响,并分析了1个周期内涡量运输方程各项对涡结构演化的贡献.结果表明:空化工况下,喷水推进泵内部流动复杂,极易产生旋涡,主要的涡结构有叶顶泄漏涡、次级泄漏涡、垂直空化涡和次级泄漏衍生涡;随着三角形空化的坍缩,进口附着涡的涡结构尺度增加,但叶顶泄漏涡因为空泡逐渐增大的缘故涡量逐渐减小;1个周期内,喷水推进泵内空泡尺度较大时,涡结构数量较多,但强度较小.空泡尺度较小时,涡结构尺度较小,强度较大;通过对涡量运输方程进行分解可以发现,拉伸扭曲项的分布与涡量分布具有极高的相似性,压缩膨胀项的量级最高,对垂直空化涡和脱落涡的变化较为敏感,斜压扭矩项在垂直空化涡的发生位置量级较高. 展开更多
关键词 喷水推进泵 空化工况 涡结构 Ω方法 涡量输运
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