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3D Particle Image Velocimetry Test of Inner Flow in a Double Blade Pump Impeller 被引量:5
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作者 LIU Houlin WANG Kai +3 位作者 YUAN Shouqi TAN Minggao WANG Yong RU Weimin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期491-497,共7页
The double blade pump is widely used in sewage treatment industry,however,the research on the internal flow characteristics of the double blade pump with particle image velocimetry(PIV) technology is very little at ... The double blade pump is widely used in sewage treatment industry,however,the research on the internal flow characteristics of the double blade pump with particle image velocimetry(PIV) technology is very little at present.To reveal inner flow characteristics in double blade pump impeller under off-design and design conditions,inner flows in a double blade pump impeller,whose specific speed is 111,are measured under the five off-design conditions and design condition by using 3D PIV test technology.In order to ensure the accuracy of the 3D PIV test,the external trigger synchronization system which makes use of fiber optic and equivalent calibration method are applied.The 3D PIV relative velocity synthesis procedure is compiled by using Visual C++ 2005.Then absolute velocity distribution and relative velocity distribution in the double blade pump impeller are obtained.Test results show that vortex exists in each condition,but the location,size and velocity of vortex core are different.Average absolute velocity value of impeller outlet increases at first,then decreases,and then increases again with increase of flow rate.Again average relative velocity values under 0.4,0.8,and 1.2 design condition are higher than that under 1.0 design condition,while under 0.6 and 1.4 design condition it is lower.Under low flow rate conditions,radial vectors of absolute velocities at impeller outlet and blade inlet near the pump shaft decrease with increase of flow rate,while that of relative velocities at the suction side near the pump shaft decreases.Radial vectors of absolute velocities and relative velocities change slightly under the two large flow rate conditions.The research results can be applied to instruct the hydraulic optimization design of double blade pumps. 展开更多
关键词 double blade pump IMPELLER inner flow 3D particle image velocimetry(PIV) test
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Influence of Blade Wrap Angle on Centrifugal Pump Performance by Numerical and Experimental Study 被引量:12
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作者 TAN Lei ZHU Baoshan +2 位作者 CAO Shuliang BING Hao WANG Yuming 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第1期171-177,共7页
The existing research on improving the hydraulic performance of centrifugal pumps mainly focuses on the design method and the parameter optimization. The traditional design method for centrifugal impellers relies more... The existing research on improving the hydraulic performance of centrifugal pumps mainly focuses on the design method and the parameter optimization. The traditional design method for centrifugal impellers relies more on experience of engineers that typically only satisfies the continuity equation of the fluid. In this study, on the basis of the direct and inverse iteration design method which simultaneously solves the continuity and motion equations of the fluid and shapes the blade geometry by controlling the wrap angle, three centrifugal pump impellers are designed by altering blade wrap angles while keeping other parameters constant. The three-dimensional flow fields in three centrifugal pumps are numerically simulated, and the simulation results illustrate that the blade with larger wrap angle has more powerful control ability on the flow pattern in impeller. The three pumps have nearly the same pressure distributions at the small flow rate, but the pressure gradient increase in the pump with the largest wrap angle is smoother than the other two pumps at the design and large flow rates. The pump head and efficiency are also influenced by the blade wrap angle. The highest head and efficiency are also observed for the largest angle. An experiment rig is designed and built to test the performance of the pump with the largest wrap angle. The test results show that the wide space of its efficiency area and the stability of its operation ensure the excellent performance of the design method and verify the numerical analysis. The analysis on influence of the blade wrap angle for centrifugal pump performance in this paper can be beneficial to the optimization design of the centrifugal pump. 展开更多
关键词 blade wrap angle centrifugal pump performance numerical simulation EXPERIMENT
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Influence of Blade Thickness on Transient Flow Characteristics of Centrifugal Slurry Pump with Semi-open Impeller 被引量:7
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作者 TAO Yi YUAN Shouqi +2 位作者 LIU Jianrui ZHANG Fan TAO Jianping 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第6期1209-1217,共9页
As the critical component, the impellers of the slurry pumps usually have blades of a large thickness. The increasing excretion coefficient of the blades affects the flow in the impeller resulting in a relatively high... As the critical component, the impellers of the slurry pumps usually have blades of a large thickness. The increasing excretion coefficient of the blades affects the flow in the impeller resulting in a relatively higher hydraulic loss, which is rarely reported. In order to investigate the influence of blade thickness on the transient flow characteristics of a centrifugal slurry pump with a semi-open impeller, transient numerical simulations were carried out on six impellers, of which the meridional blade thickness from the leading edge to trailing edge varied from 5-10 mm, 5-15 mm, 5-20 mm, 10-10 mm, 10-15 mm, and 10-20 mm, respectively. Then, two of the six impellers, namely cases 4 and 6, were manufactured and experimentally tested for hydraulic performance to verify the simulation results. Results of these tests agreed reasonably well with those of the numerical simulation. The results demonstrate that when blade thickness increases, pressure fluctuations at the outlet of the impeller become severe. Moreover, the standard deviation of the relative velocity in the middle portion of the suction sides of the blades decreases and that at the outlet of the impeller increases. Thus, the amplitude of the impeller head pulsation for each case increases. Meanwhile, the distribution of the time-averaged relative flow angle becomes less uniform and decreases at the outlet of the impeller. Hence, as the impeUer blade thickness increases, the pump head drops rapidly and the maximum efficiency point is offset to a lower flow rate condition. As the thickness of blade trailing edge increases by 10 mm, the head of the pump drops by approximately 5 m, which is approximately 10 % of the original pump head. Futhermore, it is for the first time that the time-averaged relative flow angle is being considered for the analysis of transient flow in centrifugal pump. The presented work could be a useful guideline in engineering practice when designing a centrifugal slurry pump with thick impeller blades. 展开更多
关键词 centrifugal slurry pump blade thickness transient flow characteristics time-averaged relative flow angle semi-openimpeller
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Numerical and Experimental Study on Flow-induced Noise at Blade-passing Frequency in Centrifugal Pumps 被引量:16
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作者 YANG Jun YUAN Shouqi +2 位作者 YUAN Jianping SI Qiaorui PEI Ji 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第3期606-614,共9页
With the increasing noise pollution, low noise optimization of centrifugal pimps has become a hot topic. However, experimental study on this problem is unacceptable for industrial applications due to unsustainable cos... With the increasing noise pollution, low noise optimization of centrifugal pimps has become a hot topic. However, experimental study on this problem is unacceptable for industrial applications due to unsustainable cost. A hybrid method that couples computational fluid dynamics (CFD) with computational aeroacoustic software is used to predict the flow-induced noise of pumps in order to minimize the noise of centrifugal pumps in actual projects. Under Langthjem's assumption that the blade surface pressure is the main flow-induced acoustic source in centrifugal pumps, the blade surface pressure pulsation is considered in terms of the acoustical sources and simulated using CFX software. The pressure pulsation and noise distribution in the near-cutoff region are examined for the blade-passing frequency (BPF) noise, and the sound pressure level (SPL) reached peaks near the cutoff that corresponded with the pressure pulsation in this region. An experiment is performed to validate this prediction. Four hydrophones are fixed to the inlet and outlet ports of the test pump to measure the flow-induced noise from the four-port model. The simulation results for the noise are analyzed and compared with the experimental results. The variation in the calculated noise with changes in the flow agreed well with the experimental results. When the flow rate was increased, the SPL first decreased and reached the minimum near the best efficient point (BEP); it then increased when the flow rate was further increased. The numerical and experimental results confirmed that the BPF noise generated by a blade-rotating dipole roughly reflects the acoustic features of centrifugal pumps. The noise simulation method in current study has a good feasibility and suitability, which could be adopted in engineering design to predict and optimize the hydroacoustic behavior of centrifugal pumps. 展开更多
关键词 centrifugal pumps flow-induced noise prediction blade-passing noise blade surface pressure pulsations
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The 3D Modeling of Blades of Multiphase Flow Helico-Axial Pump's Rotor Based on Solidworks 被引量:8
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作者 LI Zeng-liang ZHI Rui-ping ZHAO Chuan-wei WU Hai-yan GUAN Yu-gang 《Computer Aided Drafting,Design and Manufacturing》 2011年第2期1-6,共6页
The structure of multiphase flow helico-axial pump's rotor and how to model the rotor, especially the blades of the rotor, based on the Solidworks software. More important, the principle of the blade design is mainly... The structure of multiphase flow helico-axial pump's rotor and how to model the rotor, especially the blades of the rotor, based on the Solidworks software. More important, the principle of the blade design is mainly introduced. Under the guide of the principle, the 3D coordinates of the blade data points can be got by matlab programming. In the paper, the design step and the modeling step are particularly described through a concrete example. 展开更多
关键词 blade multiphase flow helico-axial pump ROTOR SOLIDWORKS
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Dynamic Stress Analysis of Sewage Centrifugal Pump Impeller Based on Two-way Coupling Method 被引量:8
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作者 PEI Ji YUAN Shouqi YUAN Jianping 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第2期369-375,共7页
Current research on the operational reliability of centrifugal pumps has mainly focused on hydrodynamic instability. However, the interaction between the fluid and structure has not been sufficiently considered; this ... Current research on the operational reliability of centrifugal pumps has mainly focused on hydrodynamic instability. However, the interaction between the fluid and structure has not been sufficiently considered; this interaction can cause vibration and dynamic stress, which can affect the reliability. In this study, the dynamic stresses in a single-blade centrifugal pump impeller are analysed under different operating conditions; the two-way coupling method is used to calculate the fluid-structure interaction. Three-dimensional unsteady Reynolds-averaged Navier-Stokes equations are solved with the SST k-o9 turbulence model for the fluid in the whole flow passage, while transient structure dynamic analysis is used with the finite element method for the structure side. The dynamic stresses in the rotor system are computed according to the fourth strength theory. The stress results show that the highest stress is near the loose bearing and that the equivalent stress increases with the flow rate because the dynamic stresses are closely related to the pressure load. The stress distributions on the blade pressure side, suction side, leading edge, and trailing edge are each analysed for different flow rates; the highest stress distribution is found on the pressure side. On the blade pressure side, a relatively large stress is found near the trailing edge and hub side. Based on these results, a stress distribution prediction method is proposed for centrifugal pumps, which considers the interaction between the fluid and structuxe. The method can be used to check the dynamic stress at different flow rates when optimising the pump design to increase the pump reliability. 展开更多
关键词 numerical analysis fluid-structure interaction single-blade centrifugal pump dynamic stress
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基于PumpLinx的叶片出口安放角对离心泵内外性能影响的研究 被引量:2
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作者 马浩 潘越 +1 位作者 杨帆 张泽鹏 《煤矿机械》 北大核心 2020年第5期60-63,共4页
为了全面深入了解叶片出口安放角对离心泵内外工作性能的影响,选取某单级离心泵模型为基础,通过改变叶片出口安放角大小获得6组离心泵水力模型。基于SIMPLEC算法、标准κ-ε湍流模型和雷诺时均的N-S方程作为流动控制方程,通过PumpLinx... 为了全面深入了解叶片出口安放角对离心泵内外工作性能的影响,选取某单级离心泵模型为基础,通过改变叶片出口安放角大小获得6组离心泵水力模型。基于SIMPLEC算法、标准κ-ε湍流模型和雷诺时均的N-S方程作为流动控制方程,通过PumpLinx流体机械仿真软件对不同出口安放角的水力模型进行数值模拟,得到了相应的压力、速度、水力空化云图。通过对比分析,得到了叶片出口安放角对离心泵内外工作性能和空化的影响规律。 展开更多
关键词 叶片出口安放角 离心泵 数值模拟 工作性能
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Cavitation Detection in Variable Speed Pump by Analyzing the Acoustic and Vibration Spectrums 被引量:6
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作者 Ashraf Kotb Abdulaziz Morgan Abdulaziz 《Engineering(科研)》 2015年第10期706-716,共11页
Cavitation in pumps must be detected and prevented. The present work is an attempt to use the simultaneous measurements of vibration and sound for variable speed pump to detect cavitation. It is an attempt to declare ... Cavitation in pumps must be detected and prevented. The present work is an attempt to use the simultaneous measurements of vibration and sound for variable speed pump to detect cavitation. It is an attempt to declare the relationship between the vibration and sound for the same discharge of 780 L/h and NPSHA of 0.754 at variable speeds of 1476 rpm, 1644 rpm, 1932 rpm, 2190 rpm, 2466 rpm, and 2682 rpm. Results showed that: the occurrence of cavitation depends on the rotational speed, and the sound signals in both no cavitation and cavitation conditions appear in random manner. While, surveying the vibration and sound spectrums at the second, third, and fourth blade passing frequencies reveals no indications or phenomenon associated with the cavitation at variable speeds. It is recommended to survey the vibration spectra at the rotational and blade passing frequencies simultaneously as a detection unique method of cavitation. 展开更多
关键词 CENTRIFUGAL pump CAVITATION Vibration blade PASSING Frequency Variable Speed
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Review on Applications of 3D Inverse Design Method for Pump 被引量:1
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作者 YIN Junlian WANG Dezhong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第3期520-527,共8页
The 3D inverse design method, which methodology is far superior to the conventional design method that based on geometrical description, is gradually applied in pump blade design. However, no complete description abou... The 3D inverse design method, which methodology is far superior to the conventional design method that based on geometrical description, is gradually applied in pump blade design. However, no complete description about the method is outlined. Also, there are no general rules available to set the two important input parameters, blade loading distribution and stacking condition. In this sense, the basic theory and the mechanism why the design method can suppress the formation of secondary flow are summarized. And also, several typical pump design cases with different specific speeds ranging from centrifugal pump to axial pump are surveyed. The results indicates that, for centrifugal pump and mixed pump or turbine, the ratio of blade loading on the hub to that on the shroud is more than unit in the fore part of the blade, whereas in the aft part, the ratio is decreased to satisfy the same wrap angle for hub and shroud. And the choice of blade loading type depends on the balancing of efficiency and cavitation. If the cavitation is more weighted, the better choice is aft-loaded, otherwise, the fore-loaded or mid-loaded is preferable to improve the efficiency. The stacking condition, which is an auxiliary to suppress the secondary flow, can have great effect on the jet-wake outflow and the operation range for pump. Ultimately, how to link the design method to modem optimization techniques is illustrated. With the know-how design methodology and the know-how systematic optimization approach, the application of optimization design is promising for engineering. This paper summarizes the 3D inverse design method systematically. 展开更多
关键词 pump 3D inverse design blade loading stacking condition optimization
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Optimal Operation for Baoying Pumping Station in East Route Project of South-to-North Water Transfer 被引量:7
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作者 FENG Xiaoli QIU Baoyun +2 位作者 CAO Haihong WEI Qianglin TENG Haibo 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2009年第1期78-83,共6页
Baoying pumping station is a part of source pumping stations in East Route Project of South-to-North Water Transfer in China. Aiming at the characteristics of head varying, and making use of the function of pump adjus... Baoying pumping station is a part of source pumping stations in East Route Project of South-to-North Water Transfer in China. Aiming at the characteristics of head varying, and making use of the function of pump adjustable blade, mathematical models of pumping station optimal operation are established and solved with genetic algorithm. For different total pumping discharge and total pumping volume of water per day, in order to minimize pumping station operation cost, the number and operation duties of running pump units are respectively determined at different periods of time in a day. The results indicate that the saving of electrical cost is significantly effected by the schemes of adjusting blade angles and time-varying electrical price when pumping certain water volume of water per day, and compared with conventional operation schemes (namely, the schemes of pumping station operation at design blade angles based on certain pumping discharge), the electrical cost is saved by 4.73%-31.27%. Also, compared with the electrical cost of conventional operation schemes, the electrical cost is saved by 2.03%-5.79% by the schemes of adjusting blade angles when pumping certain discharge. 展开更多
关键词 South-to-North Water Transfer Baoying pumping station optimal operation adjusting blade angle time-varying electrical price
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Investigating the Validity of Acoustic Spectrum as a Prediction Tool for Pump Cavitation
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作者 Ashraf Kotb Abdulaziz Morgan Abdulaziz 《Energy and Power Engineering》 2015年第13期575-583,共9页
Cavitation in pumps causes destructive consequences;it must be detected and prevented. The aim of the present work is investigating the validity of sound spectrum as a prediction tool for pump cavitation. Results show... Cavitation in pumps causes destructive consequences;it must be detected and prevented. The aim of the present work is investigating the validity of sound spectrum as a prediction tool for pump cavitation. Results showed that;for the discrete frequencies of RF = 47.5 Hz, and BPF = 285 Hz and its second, third, and fourth harmonics of 570 Hz, 855 Hz, and 1140 Hz respectively;there are no great variations in the noise signal for the cavitation and non-cavitation conditions. For the discrete frequency of 147 Hz, there is also no great variation in the noise signal at this frequency. The only apparent result is that;the occurrence of cavitation results high energy noise signals at high frequencies from 1000 Hz to 10000 Hz. The absence of any discrete frequency to be monitored makes the sound spectrum not valid as a prediction tool for cavitation in the pumps. 展开更多
关键词 CENTRIFUGAL pump CAVITATION ACOUSTIC blade PASSING Frequency
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Transient Hydraulic Performance and Numerical Simulation of a Centrifugal Pump with an Open Impeller during Shutting Down
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作者 Yuliang Zhang Zuchao Zhu +1 位作者 Yingzi Jin Baoling Cui 《Open Journal of Fluid Dynamics》 2012年第4期348-353,共6页
In this paper, the transient behavior of a low specific speed centrifugal pump with straight blades during shutting down is studied through the experimental test, theoretical calculation, and numerical simulation. The... In this paper, the transient behavior of a low specific speed centrifugal pump with straight blades during shutting down is studied through the experimental test, theoretical calculation, and numerical simulation. The variations of the rota- tional speed, flow rate, and head with time are obtained in experiment. Based on the experimental results of the rota- tional speed and flow rate, the additional theoretical heads are quantitatively calculated and analyzed. The experimental results of the rotational speed and flow rate are worked as the boundary conditions to accurately accomplish the nu- merical simulation of the transient flow during shutting down. The experimental results show that the decrease history of the flow rate evidently lags behind that of the rotational speed, while the rotational speed slightly lags behind the head. Theoretical analysis shows that there exists a clear negative head impact phenomenon in the process of stopping. The transient behavior of the centrifugal pump with straight blades mainly comes from the rotation deceleration of im- peller, and has nothing to do with the fluid deceleration. The numerical simulations show that a large area backflow can be seen when the rotational speed decreases to zero due to the flowing inertia. In conclusion, the numerical simulation of the flow field is in good agreement with the internal flow theory of centrifugal pumps. 展开更多
关键词 CENTRIFUGAL pump Straight blade Shut DOWN Negative Impulsion Flow INERTIA
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径向涡轮分子泵叶片结构优化及仿真分析 被引量:1
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作者 谢元华 佟英博 +6 位作者 谢天意 王桂鹏 窦仁超 孟冬辉 刘坤 孙立臣 闫荣鑫 《真空科学与技术学报》 北大核心 2025年第1期36-42,共7页
涡轮分子泵广泛应用于大科学装置、核物理工业、半导体及薄膜工业。径向涡轮分子泵转子叶列结构简单,叶列排气端呈圆弧形外扩排布,有利于叶片间气体粒子正向传输,提升了抽气效率。文章以径向结构涡轮分子泵为研究对象,基于稀薄气体传输... 涡轮分子泵广泛应用于大科学装置、核物理工业、半导体及薄膜工业。径向涡轮分子泵转子叶列结构简单,叶列排气端呈圆弧形外扩排布,有利于叶片间气体粒子正向传输,提升了抽气效率。文章以径向结构涡轮分子泵为研究对象,基于稀薄气体传输理论,采用数学粒子追踪方法,对9种不同形状的叶片结构进行对比分析,使用COMSOL软件模拟不同叶片结构下叶列间气体粒子的正、反向传输几率,探究叶片形状对气体粒子正、反向传输几率和压缩比的影响。结果表明,涡轮分子泵转子叶片一侧为弧形凸面结构,另一侧为平面结构时,分子泵的压缩比提升1个数量级,分子泵性能显著提升。研究对涡轮分子泵的设计与优化具有一定的参考价值和指导意义。 展开更多
关键词 涡轮分子泵 径向 叶片形状 传输几率 压缩比
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叶片厚度对离心泵空化性能影响的研究 被引量:1
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作者 张鹏飞 冯峰 金斌斌 《水动力学研究与进展(A辑)》 北大核心 2025年第1期68-76,共9页
为明确叶片厚度对离心泵空化性能的影响规律,该文采用数值模拟方法研究了5种叶片厚度下额定流量和小流量工况下的泵内空化流动,并通过分析叶轮内空泡体积、压力分布和流场,总结了叶片厚度对泵空化特性的影响规律。结果表明:额定流量工况... 为明确叶片厚度对离心泵空化性能的影响规律,该文采用数值模拟方法研究了5种叶片厚度下额定流量和小流量工况下的泵内空化流动,并通过分析叶轮内空泡体积、压力分布和流场,总结了叶片厚度对泵空化特性的影响规律。结果表明:额定流量工况下,叶片厚度减小,过流面积增大,流速降低,静压升高,泵内空化现象减弱;叶片厚度由13 mm减小到5 mm时,临界空化点由2.03 m减小到1.85 m;小流量工况下,随着叶片厚度减小,吸力面流动分离在进口处提前发生,叶轮内低压区域增大,泵内空化加强;叶片厚度由13 mm减小到5 mm时,临界空化点由0.67 m增加到0.71 m,此时叶轮各流道空泡和压力分布不均,易产生较大径向力。 展开更多
关键词 离心泵 空化 数值模拟 叶片厚度
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基于NSGA-Ⅱ和神经网络的长短叶片泵双目标参数优化
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作者 梁兴 马志巍 +2 位作者 熊文龙 周泊 曹寒问 《水电能源科学》 北大核心 2025年第3期163-167,共5页
针对长短叶片泵参数优化问题,以叶片进口角、叶片出口角和叶片数量为变量,以泵扬程、效率为优化目标,采用拉丁超立方设计40组试验组成样本集,并利用CFD方法计算泵性能。在数值模拟的基础上,基于BP神经网络泵性能预测模型构建长短叶片泵... 针对长短叶片泵参数优化问题,以叶片进口角、叶片出口角和叶片数量为变量,以泵扬程、效率为优化目标,采用拉丁超立方设计40组试验组成样本集,并利用CFD方法计算泵性能。在数值模拟的基础上,基于BP神经网络泵性能预测模型构建长短叶片泵双目标优化函数,并采用NSGA-Ⅱ算法寻优,进而开展双目标泵参数优化研究。结果表明,基于BP神经网络预测泵性能较准确,其中效率偏差最大为1.98%,扬程偏差最大为1.82%。NSGA-Ⅱ算法所获得的最优方案在额定工况下比原型泵扬程、效率分别提高了7.4%、1.8%;对比优化前后泵内流速分布、压力脉动等,最优方案有效改善了流动的均匀性,减小了水力损失和压力脉动,使得叶轮内部流动更加稳定,为长短叶片泵参数优化设计提供了理论依据。 展开更多
关键词 长短叶片泵 性能优化 神经网络 NSGA-Ⅱ算法
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偏大流量工况下离心泵叶轮空化流动特性数值模拟 被引量:1
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作者 张仁杰 陈露阳 +2 位作者 曾云 缪应嘉 刘华俊 《水力发电学报》 北大核心 2025年第5期10-21,共12页
为了研究离心泵在偏大流量条件下扬程下降3%时的空化特性,采用数值模拟方法重点探讨了叶轮区域的流动特性及压力脉动信号,并对影响叶片上的压力脉动的原因做了进一步分析。结果表明,空化状态下叶轮流道内的涡流结构存在显著差异,尤其是... 为了研究离心泵在偏大流量条件下扬程下降3%时的空化特性,采用数值模拟方法重点探讨了叶轮区域的流动特性及压力脉动信号,并对影响叶片上的压力脉动的原因做了进一步分析。结果表明,空化状态下叶轮流道内的涡流结构存在显著差异,尤其是在隔舌处出现明显的流动分离现象,而流量的增加使得叶轮流道内的流动更加均匀。不同工况空化状态下,叶轮出口压力脉动以叶频为主,低频及宽频脉动随着流量的增加而变化。额定工况下,各监测点压力脉动在0~290 Hz低频段内次频较为显著,流量的增加显著抑制了低频和宽频脉动,2倍叶频、3倍叶频等其他频段的波动也随流量增大而降低。通过对叶片载荷进行本征正交分解发现,隔舌与叶轮之间的动静干涉是叶片压力脉动较大的主要原因,流道内涡流的脱落也是诱发压力脉动的因素。本文为离心泵在偏大流量条件下叶轮区域的流动特性提供了深入的分析,为离心泵结构的改进与优化提供了有益的参考。 展开更多
关键词 离心泵 压力脉动 空化 叶片载荷 数值模拟
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串列叶片结构对离心泵空化性能的影响 被引量:1
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作者 赵伟国 杨良 +1 位作者 李家豪 石晓亮 《排灌机械工程学报》 北大核心 2025年第1期1-8,共8页
为改善低比转数离心泵的空化性能,设计了一种串列叶片结构的叶轮模型,采用修正的SST k-ω湍流模型和Z-G-B空化模型对离心泵进行瞬态的数值分析,并通过外特性试验和空化试验对算法进行验证,通过对比原模型与串列叶片叶轮模型的外特性与... 为改善低比转数离心泵的空化性能,设计了一种串列叶片结构的叶轮模型,采用修正的SST k-ω湍流模型和Z-G-B空化模型对离心泵进行瞬态的数值分析,并通过外特性试验和空化试验对算法进行验证,通过对比原模型与串列叶片叶轮模型的外特性与空化特性以及叶轮内的流场结构、压力分布、湍动能分布、空泡体积和压力脉动情况,分析串列叶片结构对离心泵空化性能的影响.结果表明:串列叶片结构对离心泵的外特性影响较小,但在空化发展和严重阶段抑制了空泡的产生,改善了泵的空化性能;同时抑制了空化初生阶段的高湍动能区域的扩张,削弱了空化发展和严重阶段叶轮出口湍动能强度,减少了旋转叶轮周围形成的低压区;降低了空化发展和严重阶段时蜗壳隔舌处的压力脉动主频幅值,对空化诱导产生的噪声和喘振起到抑制作用,可使泵的运行更加稳定. 展开更多
关键词 低比转数离心泵 串列叶片 空化抑制 数值模拟
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基于响应面法的仿生鱼鳞离心泵减阻机理研究
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作者 代翠 朱全章 +2 位作者 曹晶剑 张义 董亮 《流体机械》 北大核心 2025年第7期37-46,共10页
为了研究仿生鱼鳞离心泵的减阻机理,利用响应面法优化设计了仿生鱼鳞凹坑的结构参数,确定了减阻效果最佳时各结构参数的取值。研究发现,在不同工况下,仿生鱼鳞凹坑结构均能够改善离心泵的水力性能;且在额定工况下的提升最明显,相较于基... 为了研究仿生鱼鳞离心泵的减阻机理,利用响应面法优化设计了仿生鱼鳞凹坑的结构参数,确定了减阻效果最佳时各结构参数的取值。研究发现,在不同工况下,仿生鱼鳞凹坑结构均能够改善离心泵的水力性能;且在额定工况下的提升最明显,相较于基础泵,扬程和效率分别提高了0.88 m和3.71个百分点,增效率为5.13%,减阻率为4.30%;仿生鱼鳞凹坑一方面增大了叶片工作面与内部流体的接触面积,改善了叶片壁面剪应力分布,另一方面使得近壁面边界层增厚,减小了叶片近壁面雷诺应力;仿生鱼鳞凹坑能够破坏叶片表面的涡结构,减小离心泵内部涡核和叶片出口处涡区域,并降低能量交换和转化的强度,延缓边界层分离,抑制了流体流动时层流向湍流的转变,使得内部流动更均匀,进而减小了离心泵运行时所受阻力。研究可为离心泵的优化设计提供参考。 展开更多
关键词 长短叶片离心泵 仿生鱼鳞凹坑结构 优化设计 减阻机理
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考虑预旋特性的核主泵叶片安放角修正策略 被引量:1
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作者 黎义斌 牛藤 +3 位作者 周欢 杨从新 郭艳磊 王秀勇 《西华大学学报(自然科学版)》 2025年第2期1-10,共10页
为探究进口预旋特性对核主泵叶轮流场的影响,以“华龙一号”反应堆一回路系统为研究对象,通过数值仿真分析,提出叶轮叶片安放角修正策略。结果表明:主泵进口产生反向旋流,并沿流动方向旋流规律性增强;靠近叶轮进口时形成较为稳定的负预... 为探究进口预旋特性对核主泵叶轮流场的影响,以“华龙一号”反应堆一回路系统为研究对象,通过数值仿真分析,提出叶轮叶片安放角修正策略。结果表明:主泵进口产生反向旋流,并沿流动方向旋流规律性增强;靠近叶轮进口时形成较为稳定的负预旋,该预旋的螺旋角范围在-15°~13°之间,平均旋流强度为3.5°;预旋作用增大了液体的入流角度,入流角增大后液体流动方向向工作面偏转,加剧了工作面上进口处的分离流损失。根据确定的进口速度矩的值0.2,对叶轮叶片进口安放角进行调整,调整后消除了叶片前缘的流动分离现象,同时对应调整叶片出口角,调整后提高了叶轮的压能转化效率。 展开更多
关键词 核主泵 管路系统 预旋特性 叶片安放角
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分流叶片水泵水轮机驼峰区能量损失与不稳定内流关联研究
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作者 罗竹梅 董广贺 +2 位作者 曾云 杨涛 李俊 《水电能源科学》 北大核心 2025年第6期180-184,共5页
相较于传统叶片的水泵水轮机,带有分流叶片的水泵水轮机在高水头、大容量和高比转速的工作条件下有更好的应用前景。以分流叶片水泵水轮机为研究对象,针对传统水泵水轮机出现的驼峰特性和迟滞效应问题,对导叶小开度下的泵工况进行数值... 相较于传统叶片的水泵水轮机,带有分流叶片的水泵水轮机在高水头、大容量和高比转速的工作条件下有更好的应用前景。以分流叶片水泵水轮机为研究对象,针对传统水泵水轮机出现的驼峰特性和迟滞效应问题,对导叶小开度下的泵工况进行数值仿真计算,并结合熵产理论与内流状态对水力损失进行分析,深入开展分流叶片水泵水轮机泵工况驼峰区不稳定特性研究。结果表明,分流叶片水泵水轮机在导叶小开度运行时,也存在驼峰特性并伴随迟滞效应。在驼峰区运行时,转轮出口与导叶间无叶区高水力损失区域主要分布在长叶片尾缘,与传统叶片存在差异。 展开更多
关键词 水力机械 迟滞特性 水力损失 分流叶片 内流特性 水泵水轮机
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