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DYNAMICS MODEL AND SIMULATION OF FLAT VALVE SYSTEM OF INTERNAL COMBUSTION WATER PUMP 被引量:39
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作者 Zhang Hongxin Zhang Tiezhu +2 位作者 Wang Yushun Zhao Hong Huo Wei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第3期411-414,共4页
The dynamics differential equations are constructed, and the initial conditions are also given. Simulation shows the following conclusions: The water pressure in cylinder has great instantaneous pulsation and phase s... The dynamics differential equations are constructed, and the initial conditions are also given. Simulation shows the following conclusions: The water pressure in cylinder has great instantaneous pulsation and phase step when outlet valve or inlet valve opens, but is more gently in other time; The volume efficiency is influenced by the output pressure slightly, and decreases as the working rotational speed increases; When the inherent frequency of the valves is integer multiple of the working frequency, the volume efficiency of system will decrease evidently. 展开更多
关键词 Check valve Simulation Dynamics model Internal combustion water pump(ICWP)
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Evaluation of Subgrid-scale Models in Large-eddy Simulations of Turbulent Flow in a Centrifugal Pump Impeller 被引量:16
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作者 YANG Zhengjun WANG Fujun ZHOU Peijian 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期911-918,共8页
The current research of large eddy simulation (LES) of turbulent flow in pumps mainly concentrates in applying conventional subgrid-scale (SGS) model to simulate turbulent flow, which aims at obtaining the flow fi... The current research of large eddy simulation (LES) of turbulent flow in pumps mainly concentrates in applying conventional subgrid-scale (SGS) model to simulate turbulent flow, which aims at obtaining the flow field in pump. The selection of SGS model is usually not considered seriously, so the accuracy and efficiency of the simulation cannot be ensured. Three SGS models including Smagorinsky-Lilly model, dynamic Smagorinsky model and dynamic mixed model are comparably studied by using the commercial CFD code Fluent combined with its user define function. The simulations are performed for the turbulent flow in a centrifugal pump impeller. The simulation results indicate that the mean flows predicted by the three SGS models agree well with the experimental data obtained from the test that detailed measurements of the flow inside the rotating passages of a six-bladed shrouded centrifugal pump impeller performed using particle image velocimetry (PIV) and laser Doppler velocimetry (LDV). The comparable results show that dynamic mixed model gives the most accurate results for mean flow in the centrifugal pump impeller. The SGS stress of dynamic mixed model is decompose into the scale similar part and the eddy viscous part. The scale similar part of SGS stress plays a significant role in high curvature regions, such as the leading edge and training edge of pump blade. It is also found that the dynamic mixed model is more adaptive to compute turbulence in the pump impeller. The research results presented is useful to improve the computational accuracy and efficiency of LES for centrifugal pumps, and provide important reference for carrying out simulation in similar fluid machineries. 展开更多
关键词 large-eddy simulation subgrid-scale model dynamic mixed model centrifugal pump
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Application of modified k-ω model to predicting cavitating flow in centrifugal pump 被引量:7
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作者 Hou-lin LIU Dong-xi LIU +2 位作者 Yong WANG Xian-fang WU Jian WANG 《Water Science and Engineering》 EI CAS CSCD 2013年第3期331-339,共9页
Considering the compressibility of the cavity in the cavitating flow, this paper presents a modified k-ω model for predicting the cavitating flow in a centrifugal pump, in which the modified k-ω model and Schnerr-Sa... Considering the compressibility of the cavity in the cavitating flow, this paper presents a modified k-ω model for predicting the cavitating flow in a centrifugal pump, in which the modified k-ω model and Schnerr-Sauer cavitation model were combined with ANSYS CFX. To evaluate the modified and standard k-co models, numerical simulations were performed with these two models, respectively, and the calculation results were compared with the experimental data. Numerical simulations were executed with three different values of the flow coefficient, and the simulation results of the modified k-ω model showed agreement with most of the experimental data. The cavitating flow in the centrifugal pump obtained by the modified k-ω model at the design flow coefficient of 0.102, was analyzed. When the cavitation number decreases, the cavity initially generates on the suction side of the blade near the leading edge and then expands to the outlet of the impeller, and the decrease of the total pressure coefficient mainly occurs upstream of the impeller passage, while the downstream remains almost unaffected by the development of cavitation. 展开更多
关键词 modified k-co model cavitation model centrifugal pump experimental investigation
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Thermal-hydraulic Modeling and Simulation of Piston Pump 被引量:20
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作者 李成功 焦宗夏 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2006年第4期354-358,共5页
This paper presents a kind of modeling approach to the study of the thermal-hydraulic piston pump which is used in the airplane comprehensively. A set of lumped parameter mathematical models are developed which are ba... This paper presents a kind of modeling approach to the study of the thermal-hydraulic piston pump which is used in the airplane comprehensively. A set of lumped parameter mathematical models are developed which are based on conservation of energy. Heat transfer analysis for the piston pump is also given in the paper in which the heat flow inside the piston pump is described precisely. The theoretical basis and modeling stratagy are applied in a typical thermal-hydraulic circuit containing the piston pump. Simulation results are presented which show a comparison of model/rig performance and the agreement obtained demonstrates the validity of the modeling approach. 展开更多
关键词 THERMAL-HYDRAULIC piston pump TEMPERATURE modelLING
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Parameter Modeling and Kinematical Simulation for Rotor and Stator of Screw Pump 被引量:1
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作者 倪益华 吴健 过海 《Journal of Donghua University(English Edition)》 EI CAS 2013年第1期38-43,共6页
The research object used in the dissertation was screw pump, which was widely applied in engineering field. The analysis of end face profile formation was completed on its main working components, i.e., rotor and stat... The research object used in the dissertation was screw pump, which was widely applied in engineering field. The analysis of end face profile formation was completed on its main working components, i.e., rotor and stator. With the purpose of finding optimal parameters to improve the efficiency of screw pump design, the key technologies involved in the parametric modeling of rotor and stator were analyzed. The three-dimensional (3D) design software SolidWorks was used for the secondary development and parametric modeling of rotor and stator. After that the simulation models of different kinds of screw pumps were established based on the cycloid type, variation coefficient, and screw head number. Finally the COSMOSMotion was used to analyze the motion characteristics on the equidistant line of rotor, including velocity and acceleration. This design and modeling method has been used in screw pump enterprises for design and development, laying the foundation for finite element analysis and further optimization of screw pump. 展开更多
关键词 PARAMETER modeling SIMULATION ROTOR STATOR SCREW pump
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Optimal Dispatching Model Considering the Pumped Sto-rage Power Plant in Hunan
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作者 Xinfan Jiang Dunnan Liu +1 位作者 Siyuan Zhang Wenlei Zhang 《Energy and Power Engineering》 2013年第4期608-611,共4页
This paper made a research on the Intelligent Optimization Operating Modeling of Pumped Storage Power Station in Hunan Power Grid. First it introduces the characteristics of Hunan power grid and analysis the practical... This paper made a research on the Intelligent Optimization Operating Modeling of Pumped Storage Power Station in Hunan Power Grid. First it introduces the characteristics of Hunan power grid and analysis the practical requirement of dispatching. Then it brings forward the intelligent optimization model and set up running model for pumped storage power station of Hei Mi-feng. At last, it introduces the application of pumped storage power station in Hunan power grid and proves the effectiveness of the optimization models. 展开更多
关键词 Intelligent Optimization DISPATCHING model pumpED Storage Power STATION
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Mathematical model of absorption and hybrid heat pump 被引量:1
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作者 Grazia Leonzio 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第10期1492-1504,共13页
Recovering waste heat from industrial processes is bene ficial in order to reduce the primary energy demands and heat pumps can be used to this purpose.Absorption heat pumps are energy-saving and environment-friendly ... Recovering waste heat from industrial processes is bene ficial in order to reduce the primary energy demands and heat pumps can be used to this purpose.Absorption heat pumps are energy-saving and environment-friendly because use working fluids that do not cause ozone depletion and can reduce the global warming emissions.The hybrid heat pump processes combine the conventional vapor-compression and the absorption heat pump cycles.Studies about the simulations and modeling of hybrid heat pumps are few in literature.In this research a mathematical model for single effect absorption and hybrid heat pump is carried out with Chem Cad? 6.0.1.LiBr–H_2O is used as working fluid while electrolytic NRTL and electrolytes latent heat are used as thermodynamic model due to the better results.Binary parameters of activity coef ficients are regressed from experimental vapor pressure data while default constants are used for the solubility expressions.A design of heat pumps is developed and a new modeling of generator is analyzed.The coef ficient of performance of absorption heat pump and hybrid heat pump is equal to 0.7 and 0.83 respectively.For absorption heat pump a sensitivity analysis is carried out to evaluate the effect of temperature and pressure generator,the concentration of Li–Br solution on coef ficient of performance,cooling capacity and working fluid temperature.For hybrid heat pump,the different coef ficients of performance,the primary energy ratio,the generator heat,and the compressor power are analyzed for different values of compressor proportion.Results show that comparing the two systems the hybrid pump allows to save more primary energy,costs and carbon dioxide emissions with respect to absorption heat pump with the increasing of compressor proportion parameter.Future researches should focus on the construction of this heat pumps integrated in chemical processes as a biogas plant or trigeneration systems. 展开更多
关键词 Absorption heat pumps Hybrid heat pumps LiBr–H2O modeling Energy efficiency Process simulation Mathematical model
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Transient simulation of a pump-turbine with misaligned guide vanes during turbine model start-up 被引量:9
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作者 Ye-Xiang Xiao Ruo-Fu Xiao 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第5期646-655,共10页
Experimental studies of a model pump-turbine S-curve characteristics and its improvement by misaligned guide vanes (MGV) were extended to prototype pump turbine through 3-D transient flow simulations. The unsteady R... Experimental studies of a model pump-turbine S-curve characteristics and its improvement by misaligned guide vanes (MGV) were extended to prototype pump turbine through 3-D transient flow simulations. The unsteady Reynolds-averaged Navier-Stokes equations with the SST turbulence model were used to model the transient flow within the entire flow passage of a reversible pump-turbine with and without misaligned guide vanes during turbine model start-up. The unstable S-curve and its improvement by using misaligned guide vane were verified by model test and simulation. The transient flow calculations were used to clarify the variations of pressure pulse and internal flow behavior in the entire flow passage. The use of misaligned guide vanes can eliminate the S-curve characteristics of a pump-turbine, and can significantly increase the pressure pulse amplitude in the entire flow passage and the runner radial forces during start-up. The MGV only decreased the pulse amplitude on the guide vane suction side when the rotating speed was less than 50% rated speed. The hydraulic reason is that the MGV dramatically changed the flow patterns inside the entire flow passage, and destroyed the symmetry of the flow distribution inside the guide vane and runner. 展开更多
关键词 Transient flow. pump turbine. Misaligned guide vane model test Pressure pulse
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DYNAMIC MATHEMATICAL MODELING AND APPLICATION FOR PUMPING SYSTEM PERFORMANCE INTEGRATED EVALUATION
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作者 ChenHongxun WangJian WuYuejun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2003年第3期285-288,共4页
A mathematical model is set to evaluate the overall centrifugal pumpingsystem using asynchronous motor as power. This method can be used to affirm system performanceaccording the transform and the aberrance of interio... A mathematical model is set to evaluate the overall centrifugal pumpingsystem using asynchronous motor as power. This method can be used to affirm system performanceaccording the transform and the aberrance of interior parameters and exterior performance curves soas to give a reference to the equipment amelioration. The analysis of emulation experiment datasuggests the model is effectively used. 展开更多
关键词 pumping system Mathematical model Performance evaluation
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Determination of Aquifer Parameters by Numerical Model Based on the Large Scale-Pumping Test:A Case Study in Yanqi Basin
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作者 Jin Gao,Xinguang Dong 1.College of Resources and Environment Science,Xinjiang University,rümqi,China. 2.Xinjiang Water Resources Bureau,rümqi,China 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期21-21,共1页
The determination of aquifer parameters is the basis for groundwater resource evaluation,development and protection as well as scientific management. Pumping test is a main method to determine the aquifer parameters.H... The determination of aquifer parameters is the basis for groundwater resource evaluation,development and protection as well as scientific management. Pumping test is a main method to determine the aquifer parameters.However,the analytic methods can’t be used to describe the heterogeneous and spatial variant of the parameters in detail.The aquifer parameters derived from analytic methods may lead much uncertainty of groundwater resource evaluation. 展开更多
关键词 pumpING test PARAMETERS NUMERICAL modelING INVERSION modelING
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Modeling and Analysis of Pumping Motor Drives in Hardware-in-the-Loop Environment
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作者 Valery Vodovozov Levon Gevorkov Zoja Raud 《Journal of Power and Energy Engineering》 2014年第10期19-27,共9页
In the proposed paper, the new experimental results are described obtained from the laboratory stand and the model developed by the authors. A method of acquiring characteristics of a pump motor drive using a hardware... In the proposed paper, the new experimental results are described obtained from the laboratory stand and the model developed by the authors. A method of acquiring characteristics of a pump motor drive using a hardware-in-the-loop simulation approach is explained. To explore the centrifugal pumps manufactured by ABB, their own control system is used whereas an industrial pump is replaced with the specially designed simulator. To clarify the model topology and parameters, a double-machine assembly was designed and used as universal pump prototype. A library of reference and disturbance signals used in pumping was applied as a modeling tool. In this way, the advantages of mathematical and physical simulations have been combined with optimal interaction of both approaches. 展开更多
关键词 CENTRIFUGAL pump ELECTRIC DRIVE modeling HARDWARE-IN-THE-LOOP Simulation
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Inverse modelling of aquifer parameters in basaltic rock with the help of pumping test method using MODFLOW software 被引量:1
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作者 Kanak Moharir Chaitanya Pande Sanjay Patil 《Geoscience Frontiers》 SCIE CAS CSCD 2017年第6期1385-1395,共11页
The origin and movement of groundwater are the fundamental questions that address both the temporal and spatial aspects of ground water run and water supply related issues in hydrological systems.As groundwater flows ... The origin and movement of groundwater are the fundamental questions that address both the temporal and spatial aspects of ground water run and water supply related issues in hydrological systems.As groundwater flows through an aquifer,its composition and temperature may variation dependent on the aquifer condition through which it flows.Thus,hydrologic investigations can also provide useful information about the subsurface geology of a region.But because such studies investigate processes that follow under the Earth's shallow,obtaining the information necessary to answer these questions is not continuously easy.Springs,which discharge groundwater table directly,afford to study subsurface hydrogeological processes.The present study of estimation of aquifer factors such as transmissivity(T)and storativity(S)are vital for the evaluation of groundwater resources.There are several methods to estimate the accurate aquifer parameters(i.e.hydrograph analysis,pumping test,etc.).In initial days,these parameters are projected either by means of in-situ test or execution test on aquifer well samples carried in the laboratory.The simultaneous information on the hydraulic behavior of the well(borehole)that provides on this method,the reservoir and the reservoir boundaries,are important for efficient aquifer and well data management and analysis.The most common in-situ test is pumping test performed on wells,which involves the measurement of the fall and increase of groundwater level with respect to time.The alteration in groundwater level(drawdown/recovery)is caused due to pumping of water from the well.Theis(1935)was first to propose method to evaluate aquifer parameters from the pumping test on a bore well in a confined aquifer.It is essential to know the transmissivity(T=Kb,where b is the aquifer thickness;pumping flow rate,Q=TW(dh/dl)flow through an aquifer)and storativity(confined aquifer:S=bS_s,unconfined:S=S_y),for the characterization of the aquifer parameters in an unknown area so as to predict the rate of drawdown of the groundwater table/potentiometric surface throughout the pumping test of an aquifer.The determination of aquifer's parameters is an important basis for groundwater resources evaluation,numerical simulation,development and protection as well as scientific management.For determining aquifer's parameters,pumping test is a main method.A case study shows that these techniques have been fast speed and high correctness.The results of parameter's determination are optimized so that it has important applied value for scientific research and geology engineering preparation. 展开更多
关键词 pumpING test Hantush method GPS MODFLOW INVERSE modelling Hydraulic parameters
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Dynamic Modelling of Submersible Pump Based Solar Water-Pumping System with Three-Phase Induction Motor Using MATLAB
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作者 Faisal Alkarrami Tariq Iqbal +1 位作者 Kevin Pope Geoff Rideout 《Journal of Power and Energy Engineering》 2020年第2期20-64,共45页
The main purpose of this paper is to design and model a water-pumping system using a submersible multi-stage centrifugal pump driven by a three-phase induction motor. The system is intended for pumping water to the su... The main purpose of this paper is to design and model a water-pumping system using a submersible multi-stage centrifugal pump driven by a three-phase induction motor. The system is intended for pumping water to the surface from a deep well using three power supply systems: a general network, a photo-voltaic (PV) system, and a PV system with a battery bank. These systems are used to compare two three-phase induction motors—namely, a motor with a drive and another one without a drive. The systems dynamic models are simulated in MATLAB/Simulink and the results compared with the manufacturer’s data for validation purposes. The simulation results generally show system dynamics and expected performance over a range of operation. 展开更多
关键词 Dynamic modeling Induction Motor WATER pumpING SYSTEM SUBMERSIBLE pump PV SYSTEM Battery BANK MATLAB/SIMULINK
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融入五匠育人的BOPPPS教学实践研究——以泵与风机在线课程为例
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作者 廖庆庆 宁艳花 程延武 《江西电力职业技术学院学报》 CAS 2024年第6期63-65,共3页
BOPPPS教学模式作为加拿大教师技能培训体系ISW的理论基础,在国内高校课堂教学中得到了广泛的应用与发展。与传统课堂教学相比,BOPPPS教学模式更加关注和强调学习目标的明确与可达成性、学生积极参与教学过程和教学过程的反思。以泵与... BOPPPS教学模式作为加拿大教师技能培训体系ISW的理论基础,在国内高校课堂教学中得到了广泛的应用与发展。与传统课堂教学相比,BOPPPS教学模式更加关注和强调学习目标的明确与可达成性、学生积极参与教学过程和教学过程的反思。以泵与风机课程为例,探索在数智时代背景下在线课程与BOPPPS教学模式的有机结合,旨在培养具有工匠精神,精操作、懂工艺、会运维、善协作、能创新的现场工程师。 展开更多
关键词 BOPPPS教学模式 泵与风机课程 五匠育人
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基于机器学习的空气源热泵干燥能耗回归预测 被引量:4
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作者 杨仕 陈维汉 +5 位作者 杨明金 张原 李守太 蒲应俊 杨玲 宋卫东 《农业工程学报》 EI CAS CSCD 北大核心 2024年第2期41-51,共11页
为了降低空气源热泵干燥过程能耗,研究了空气源热泵干燥能耗特性,采用多元线性回归模型(multivariate linear regression model, MLRM)和BP神经网络(back propagation neural network, BPNN)模型来预测干燥工艺能耗。在分析干燥能耗影... 为了降低空气源热泵干燥过程能耗,研究了空气源热泵干燥能耗特性,采用多元线性回归模型(multivariate linear regression model, MLRM)和BP神经网络(back propagation neural network, BPNN)模型来预测干燥工艺能耗。在分析干燥能耗影响特征参数的基础上,提出将干燥工艺过程进行切分处理的方法以降低数据获取难度。选取烘房设定温度、烘房设定湿度、烘房初始温度、烘房初始湿度、环境平均温度、环境平均湿度、物料质量和初始含水率8个特征参数作为模型输入,能耗和物料结束含水率作为模型输出。使用MLRM模型、BPNN模型和其他机器学习模型进行能耗预测,MLRM模型对能耗拟合的决定系数为0.739,对物料结束含水率拟合的决定系数为0.931;BPNN模型使用Sigmoid函数作为激活函数时对能耗拟合的决定系数最高,为0.828,使用Identity函数作为激活函数时对物料结束含水率拟合的决定系数最高,为0.942,拟合效果优于其他机器学习模型,能够满足实际生产需求。以复水豌豆为干燥对象设计加载物料65 kg、持续时间4 h的完整变温变湿干燥工艺进行验证试验,结果表明:试验总能耗为15.066 kW·h,MLRM模型和BPNN模型的预测总能耗分别为14.476 kW·h、15.183 kW·h,预测精度分别为96.08%、99.23%;试验结束含水率为8.541%,MLRM模型和BPNN模型的预测结束含水率分别为9.560%、8.889%,预测精度分别为88.07%、95.93%。该研究提出了一种使用MLRM模型和BPNN模型对空气源热泵干燥能耗进行分段精准预测的有效手段,对于优化干燥工艺和降低干燥能耗具有实际意义。 展开更多
关键词 热泵干燥 能耗模型 回归预测 机器学习 工艺切分
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合理确定排涝泵站规模的感潮河道模型试验研究 被引量:1
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作者 刘中峰 黄本胜 +1 位作者 刘达 李明 《长江科学院院报》 CSCD 北大核心 2024年第4期23-28,共6页
合理确定泵站规模一直是感潮河道排涝工程设计中的关键问题。通过建立物理模型,在选定的水文边界条件和相应工程运行要求下,对某感潮水系两座涌口泵站规模进行试验研究。试验发现,受限于河涌过流能力,泵站规模存在临界值,超过该值后,即... 合理确定泵站规模一直是感潮河道排涝工程设计中的关键问题。通过建立物理模型,在选定的水文边界条件和相应工程运行要求下,对某感潮水系两座涌口泵站规模进行试验研究。试验发现,受限于河涌过流能力,泵站规模存在临界值,超过该值后,即使再进一步增加泵站规模,水位也不会继续下降;泵站抽排对某位置水位的降低效应与泵站和该位置之间的距离密切相关,距离越近,水位降低越明显。基于上述认识,通过试验确定了满足水位管控要求的两座泵站规模的合理组合:距离相对较远的温涌泵站为80 m3/s,较近的金紫涌泵站为130 m~3/s。试验方法和主要成果可为工程方案比选及优化提供重要依据,对类似河涌整治工程也具有一定的借鉴意义。 展开更多
关键词 感潮河道 排涝泵站规模 物理模型试验 水位 整治工程
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基于混合模型的特种车辆转向泵马达性能评估
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作者 李乐 米雨欣 贾然 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第8期155-164,共10页
为了实现转向泵马达运行性能的实时评估,首先构建了转向泵马达物理模型,该模型考虑了转向泵马达运行机理,通过求解泵马达外特性方程、液压回路平衡方程、内部流量计算方程等,实现内部不可测参数的初步评估与计算,进而获得各类参数对转... 为了实现转向泵马达运行性能的实时评估,首先构建了转向泵马达物理模型,该模型考虑了转向泵马达运行机理,通过求解泵马达外特性方程、液压回路平衡方程、内部流量计算方程等,实现内部不可测参数的初步评估与计算,进而获得各类参数对转向泵马达性能的影响机制.同时采用LSTM深度学习方法构建了转向泵马达数据驱动模型,学习并预测不同工况下转向泵马达容积效率的变化规律,并将其输入至物理模型形成转向泵马达性能评估混合模型,提高不同工况条件下转向泵马达性能评估的准确性及适用性.实例分析表明,该混合模型可实现复杂工况下转向泵马达高低压侧压力、流量、转速及转矩等参数的计算与评估,模型误差低于10%. 展开更多
关键词 转向泵马达 混合模型 性能评估
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基于AMESim的新型变排量机油泵建模与仿真研究
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作者 张伟 翟翼飞 《机床与液压》 北大核心 2024年第7期147-152,共6页
以一种新型叶片柱塞复合形式的二级变量叶片泵为研究对象,其主要特点是将叶片顶端嵌入到定子中,转子、叶片、定子同时转动,减小了高速时的叶片冲击。推导叶片柱塞复合作用下泵的瞬时流量特性公式。基于AMESim仿真平台搭建比例电磁阀、... 以一种新型叶片柱塞复合形式的二级变量叶片泵为研究对象,其主要特点是将叶片顶端嵌入到定子中,转子、叶片、定子同时转动,减小了高速时的叶片冲击。推导叶片柱塞复合作用下泵的瞬时流量特性公式。基于AMESim仿真平台搭建比例电磁阀、瞬时流量、变量机构模型,并对二级变量叶片泵特性进行仿真,并通过台架试验进行相关验证。实验结果表明:该泵在中低速下压力-流量曲线吻合较好,说明流量和变排量建模准确;加减速曲线说明泵在比例阀不同占空比时,压力调节具有稳定性。 展开更多
关键词 机油泵 叶片柱塞复合式叶片泵 建模与仿真
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感潮河段城市湿地水动力模拟及改善方案研究 被引量:1
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作者 丁磊 陈黎明 +1 位作者 王逸飞 缴健 《水利水运工程学报》 CSCD 北大核心 2024年第1期35-45,共11页
湿地具有固碳释氧、涵养水源等作用,改善水体交换能力是湿地研究热点之一,但关于潮汐变动水位条件下湿地水体调控措施的探究相对较少。以长江南京段绿水湾湿地为例,建立平面二维水动力模型,开展感潮河段城市湿地水动力模拟及改善方案研... 湿地具有固碳释氧、涵养水源等作用,改善水体交换能力是湿地研究热点之一,但关于潮汐变动水位条件下湿地水体调控措施的探究相对较少。以长江南京段绿水湾湿地为例,建立平面二维水动力模型,开展感潮河段城市湿地水动力模拟及改善方案研究。计算不同水文条件及闸泵调度方案下湿地流场,分析潮位变动对绿水湾湿地水动力的影响,分析不同闸泵调度措施对水体流动性的改善效果。研究表明,闸泵联合调度可使枯季大部分区域水动力明显增强,但仍存在主槽外坑塘等局部滞水区,需通过湿地植被重构的方式提高水体自净能力。对易暴发藻类的4—5月,闸泵联合调度可较好改善绿水湾内上游区域的水动力条件,对于改善效果并不明显的下游区域建议增设补水点,降低水体富营养化风险。本研究可为绿水湾湿地的设计、建设与管理提供科学依据。 展开更多
关键词 城市湿地 二维水动力模型 感潮河段 闸泵调度 生态补水
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两条轴线平行布置的泄洪洞出口联合消能工布置形式研究
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作者 李伟 崔笑 +2 位作者 吴吉才 谭盛凛 韩立军 《水力发电》 CAS 2024年第7期43-48,共6页
针对芝瑞抽水蓄能电站下水库两条轴线平行布置的泄洪排沙洞,原设计方案出口联合消能工存在消能效果差的问题,通过选用单体正态水工模型,基于水力相似准则进行水工模型试验,对出口联合消能工的布置形式进行研究。试验实测数据表明,最终... 针对芝瑞抽水蓄能电站下水库两条轴线平行布置的泄洪排沙洞,原设计方案出口联合消能工存在消能效果差的问题,通过选用单体正态水工模型,基于水力相似准则进行水工模型试验,对出口联合消能工的布置形式进行研究。试验实测数据表明,最终推荐方案可有效提高消能效率、改善水流流态、优化设计方案,并达到了减少工程投资的目的,有效地解决了轴线平行布置的泄洪洞出口联合消能问题。 展开更多
关键词 轴线平行布置 泄洪洞 联合消能工 布置形式 模型试验 芝瑞抽水蓄能电站
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