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Impact of Typical Steady-state Conditions and Transient Conditions on Flow Ripple and Its Test Accuracy for Axial Piston Pump 被引量:14
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作者 XU Bing HU Min ZHANG Junhui 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第5期1012-1022,共11页
The current research about the flow ripple of axial piston pump mainly focuses on the effect of the structure of parts on the flow ripple. Therein, the structure of parts are usually designed and optimized at rated wo... The current research about the flow ripple of axial piston pump mainly focuses on the effect of the structure of parts on the flow ripple. Therein, the structure of parts are usually designed and optimized at rated working conditions. However, the pump usually has to work in large-scale and time-variant working conditions. Therefore, the flow ripple characteristics of pump and analysis for its test accuracy with respect to variant steady-state conditions and transient conditions in a wide range of operating parameters are focused in this paper. First, a simulation model has been constructed, which takes the kinematics of oil film within friction pairs into account for higher accuracy. Afterwards, a test bed which adopts Secondary Source Method is built to verify the model. The simulation and tests results show that the angular position of the piston, corresponding to the position where the peak flow ripple is produced, varies with the different pressure. The pulsating amplitude and pulsation rate of flow ripple increase with the rise of pressure and the variation rate of pressure. For the pump working at a constant speed, the flow pulsation rate decreases dramatically with the increasing speed when the speed is less than 27.78% of the maximum speed, subsequently presents a small decrease tendency with the speed further increasing. With the rise of the variation rate of speed, the pulsating amplitude and pulsation rate of flow ripple increase. As the swash plate angle augments, the pulsating amplitude of flow ripple increases, nevertheless the flow pulsation rate decreases. In contrast with the effect of the variation of pressure, the test accuracy of flow ripple is more sensitive to the variation of speed. It makes the test accuracy above 96.20% available for the pulsating amplitude of pressure deviating within a range of ~6% from the mean pressure. However, with a variation of speed deviating within a range of ±2% from the mean speed, the attainable test accuracy of flow ripple is above 93.07%. The model constructed in this research proposes a method to determine the flow ripple characteristics of pump and its attainable test accuracy under the large-scale and time-variant working conditions. Meanwhile, a discussion about the variation of flow ripple and its obtainable test accuracy with the conditions of the pump working in wide operating ranges is given as well. 展开更多
关键词 axial piston pump flow ripple test accuracy steady-state condition transient condition wide operating ranges
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Distribution characteristics and impact on pump's efficiency of hydro-mechanical losses of axial piston pump over wide operating ranges 被引量:4
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作者 XU Bing HU Min +1 位作者 ZHANG Jun-hui MAO Ze-bing 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第3期609-624,共16页
A novel performance model of losses of pump was presented,which allows an explicit insight into the losses of various friction pairs of pump.The aim is to clarify that to what extent the hydro-mechanical losses affect... A novel performance model of losses of pump was presented,which allows an explicit insight into the losses of various friction pairs of pump.The aim is to clarify that to what extent the hydro-mechanical losses affect efficiency,and to further gain an insight into the variation and distribution characteristics of hydro-mechanical losses over wide operating ranges.A good agreement is found in the comparisons between simulation and experimental results.At rated speed,the hydro-mechanical losses take a proportion ranging from 87% to 89% and from 68% to 97%,respectively,of the total power losses of pump working under 5 MPa pressure conditions,and 13% of full displacement conditions.Furthermore,within the variation of speed ranging from 48% to 100% of rated speed,and pressure ranging from 14% to 100% of rated pressure,the main sources of hydro-mechanical losses change to slipper swash plate pair and valve plate cylinder pair at low displacement conditions,from the piston cylinder pair and slipper swash plate pair at full displacement conditions.Besides,the hydro-mechanical losses in ball guide retainer pair are found to be almost independent of pressure.The derived conclusions clarify the main orientations of efforts to improve the efficiency performance of pump,and the proposed model can service for the design of pump with higher efficiency performance. 展开更多
关键词 axial piston pump efficiency hydro-mechanical losses digital prototyping distribution characteristics over wideoperating ranges
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Numerical and Experimental Investigation of High-efficiency Axial-flow Pump 被引量:50
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作者 SHI Weidong ZHANGDesheng GUAN Xingfan LENG Hongfei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第1期38-44,共7页
The experimental investigation of axial-flow pump has been rapidly developed to meet the needs of South-to-North Water Diversion Project of China. Owing to the boundary conditions of hub, blade tip clearance, much of ... The experimental investigation of axial-flow pump has been rapidly developed to meet the needs of South-to-North Water Diversion Project of China. Owing to the boundary conditions of hub, blade tip clearance, much of the physical phenomena and laws involved in this complex flow field can't be fully determined. The flow characteristics of the high efficiency axial-flow pump have been simulated by RNG k-e turbulence model and SIMPLEC arithmetic based on FLUENT software. Numerical results indicate that the data from the prediction show agreement with the experimental results, static pressure on pressure side of blades increases slightly at circumferential direction with radius increasing, and keep almost constant at the same radial while increasing gradually from inlet to exit on the suction side along flow direction at design conditions. The static pressure, total pressure and velocity at inlet, impeller outlet and vane outlet were measured by a five-hole probe, and a contrastive experiment was done to investigate the influence of hub leakage. The experimental results show that inlet flow is almost axial and the prerotation is very small at various conditions. The meridional velocity and circulation distribution are almost identical at impeller outlet at design conditions due to steady flow and high efficiency. The residual circulation exits at downstream of the guide vane, and the circumferential velocity component increases linearly from hub to tip at small flow rate conditions. Hub leakage in adjustable blades results in the decrease of the meridional velocity and circulation at blade exit near hub. The results of numerical simulation and experiments supply important flow structure information for the high-efficiency axial-flow pump. 展开更多
关键词 axial-flow pump flow field multi-conditions high efficiency PROBE hub leakage
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Analysis of pressure pulsation mechanism and dynamic characteristics of axial piston pump 被引量:3
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作者 ZHAO Baojian GU Lichen +4 位作者 LIU Jiamin GENG Baolong SHI Yuan WU Haoyu YANG Sha 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2022年第1期21-30,共10页
The pressure pulsation of axial piston pump is not only an important cause of rotation speed fluctuation,vibration noise and output stability of the hydraulic system,but also the main information source for obtaining ... The pressure pulsation of axial piston pump is not only an important cause of rotation speed fluctuation,vibration noise and output stability of the hydraulic system,but also the main information source for obtaining fault information.Hydraulic system is characterized by strong noise interference,which leads to low signal-to-noise ratio(SNR)of detection signals.Therefore,it is necessary to dig deep into the system operating state information carried by pressure signals.Firstly,based on flow loss mechanism of the plunger pump,the mapping relationship between flow pulsation and pressure pulsation is analyzed.After that,the pressure signal is filtered and reconstructed based on standard Gabor transform.Finally,according to the time-domain waveform morphology of pressure signal,four characteristic indicators are proposed to analyze the characteristics of pressure fluctuations under different working conditions.The experimental results show that the standard Gabor transform can accurately extract high-order harmonics and phase frequencies of the signal.The reconstructed time-domain waveform of pressure pulsation of the axial piston pump contains a wealth of operating status information,and the characteristics of pulsation changes under various working conditions can provide a new theoretical basis and a method support for fault diagnosis and health assessment of hydraulic pumps,motors and key components. 展开更多
关键词 axial piston pump pressure pulsation standard Gabor transform appearance characteristics operating conditions
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Health status assessment of axial piston pump under variable speed 被引量:1
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作者 Guo Rui Li Hucheng +3 位作者 Zhao Zhiqian Zhang Rongbing Zhao Jingyi Gao Dianrong 《High Technology Letters》 EI CAS 2020年第3期315-322,共8页
The axial piston pump usually works under variable speed conditions.It is important to evaluate the health status of the axial piston pump under the variable speed condition.Aiming at the characteristic signals obtain... The axial piston pump usually works under variable speed conditions.It is important to evaluate the health status of the axial piston pump under the variable speed condition.Aiming at the characteristic signals obtained under different wear levels of the port plate,a feature signal extraction method under variable speed conditions is proposed.Firstly,the combination of complete ensemble empirical mode decomposition with adaptive noise(CEEMDAN)energy spectrum and fast spectral kurtosis principle is used to accurately extract the intrinsic mode function(IMF)component containing the sensitive information of the degraded feature.Then,the aspect ratio analysis method of the angle domain variational mode decomposition(VMD)is used to process the feature index containing the sensitive information of the degraded feature.In order to evaluate the health status of the axial piston pump under variable speed,the vibration reliability analysis method for axial piston pump based on Weibull proportional failure rate model is proposed.The experimental results show that the proposed method can accurately evaluate the health status of the axial piston pump. 展开更多
关键词 axial piston pump variable speed condition order ratio variational mode decomposition(VMD)in angle domain health status assessment
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Pre-Compression Volume on Flow Ripple Reduction of a Piston Pump 被引量:18
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作者 XU Bing SONG Yuechao YANG Huayong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第6期1259-1266,共8页
Axial piston pump with pre-compression volume(PCV) has lower flow ripple in large scale of operating condition than the traditional one. However, there is lack of precise simulation model of the axial piston pump wi... Axial piston pump with pre-compression volume(PCV) has lower flow ripple in large scale of operating condition than the traditional one. However, there is lack of precise simulation model of the axial piston pump with PCV, so the parameters of PCV are difticult to be determined. A finite element simulation model for piston pump with PCV is built by considering the piston movement, the fluid characteristic(including fluid compressibility and viscosity) and the leakage flow rate. Then a test of the pump flow ripple called the secondary source method is implemented to validate the simulation model. Thirdly, by comparing results among the simulation results, test results and results from other publications at the same operating condition, the simulation model is validated and used in optimizing the axial piston pump with PCV. According to the pump flow ripples obtained by the simulation model with different PCV parameters, the flow ripple is the smallest when the PCV angle is 13~, the PCV volume is 1.3 ~ I0-4 m3 at such operating condition that the pump suction pressure is 2 MPa, the pump delivery pressure 15 MPa, the pump speed 1 000 r/min, the swash plate angle 13~. At the same time, the flow ripple can be reduced when the pump suction pressure is 2 MPa, the pump delivery pressure is 5 MPa,15 MPa, 22 MPa, pump speed is 400 r/min, 1 000 r/rain, 1 500 r/rain, the swash plate angle is ll~, 13~, 15~ and 17~, respectively. The finite element simulation model proposed provides a method for optimizing the PCV structure and guiding for designing a quieter axial piston pump. 展开更多
关键词 pre-compression volume flow ripple operating condition axial piston pump
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轴向柱塞泵热特性及热力学建模实验研究
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作者 刘明尧 刘贝垚 《机电工程》 CAS 北大核心 2024年第7期1207-1214,共8页
针对轴向柱塞泵在高压和高速工况下发热过快的问题,对柱塞泵热特性和热力学建模进行了仿真分析与实验研究。首先,在摩擦副发热理论基础上,考虑了泵内油液搅动摩擦与轴承摩擦发热源,研究了柱塞泵内发热机理和传热分析的热特性理论;然后,... 针对轴向柱塞泵在高压和高速工况下发热过快的问题,对柱塞泵热特性和热力学建模进行了仿真分析与实验研究。首先,在摩擦副发热理论基础上,考虑了泵内油液搅动摩擦与轴承摩擦发热源,研究了柱塞泵内发热机理和传热分析的热特性理论;然后,根据柱塞泵部件复杂和固流态域区分度高的特点,阐述了所采用的控制体积法原理,将泵划分为5个控制体积后,建立了以各个控制体温度变化为导向的热力学模型;最后,采用光纤光栅温度传感器和蓝牙无线温度传感器,针对不同的控制体节点设计了传感器封装结构和布置方法,共同组成了轴向柱塞泵在线热监测系统,并进行了在不同压力条件下的对照实验,对理论模型进行了有效性验证与分析。研究结果表明:对比实验和仿真结果,模型温度变化与实际误差值在5%左右,验证了该模型能准确地反映和预测泵热力学变化过程。该结果为柱塞泵热力学状态监测提供了故障诊断基础,并为液压系统热管理系统设计提供了理论基础和设计依据。 展开更多
关键词 轴向柱塞泵发热 高压和高速工况 热力学建模 温度计算 传热理论 热力学状态在线监测
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不同转速下轴向柱塞泵效率分析与研究
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作者 黄国威 《一重技术》 2024年第2期5-7,4,共4页
应用相似原理,推导出几何相似的轴向柱塞泵容积效率和机械效率的无因次变量表达式,根据已有参数计算出不同转速下泵的效率,为液压系统节能控制提供数据支持。
关键词 相似原理 轴向柱塞泵 变转速 无因次变量 容积效率 机械效率
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并联水泵控制策略优化分析
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作者 葛琦 闫田田 《节能》 2024年第5期71-74,共4页
以上海某汽车工厂冷站的二级泵系统为研究对象,探讨优化水泵系统运行以提高效率的方法。从能源管理系统导出历史运行数据,建立水泵实际性能模型;利用Matlab软件创建数学模型遍历工况求解,进行最优运行台数分区;根据现场实际情况制定优... 以上海某汽车工厂冷站的二级泵系统为研究对象,探讨优化水泵系统运行以提高效率的方法。从能源管理系统导出历史运行数据,建立水泵实际性能模型;利用Matlab软件创建数学模型遍历工况求解,进行最优运行台数分区;根据现场实际情况制定优化运行策略并部署运行。结果表明,水泵节能率达到7%,对提升水泵效率具有指导意义,可以在不进行硬件改造的前提下,降低运行成本。 展开更多
关键词 水泵运行效率 能源管理系统 遍历工况求解 最佳台数分区 节能率
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非对称并行结构螺杆泵采油系统参数配置方法研究 被引量:3
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作者 童华仁 阎明印 +1 位作者 赵晶 王世杰 《机电工程》 CAS 北大核心 2023年第8期1194-1201,共8页
非对称并行结构螺杆泵采油系统,可以从根本解决推力球轴承限径、承载能力过小以及寿命短的问题。但是,目前非对称反旋向并行结构螺杆泵采油系统只有概念模型结构,尚未有人对双泵的参数配置方法进行研究。为此,提出了一种新型井下非对称... 非对称并行结构螺杆泵采油系统,可以从根本解决推力球轴承限径、承载能力过小以及寿命短的问题。但是,目前非对称反旋向并行结构螺杆泵采油系统只有概念模型结构,尚未有人对双泵的参数配置方法进行研究。为此,提出了一种新型井下非对称反旋向并行结构电机驱动螺杆泵采油系统。首先,基于“等寿命”理念开展了双螺杆泵的参数配置方法研究,给出了双泵匹配需要满足的约束条件,建立了易失效部件的受力分析模型,根据力平衡原理给出了部件之间的受力关系,分析了单螺杆泵转子所受轴向力和工作扭矩;然后,依据等寿命准则(推力球轴承与万向联轴器的疲劳使用寿命趋于相等),确定了推力球轴承所受轴向压力与联轴器所受拉力之间的比值关系,给出了上下两螺杆泵之间所受轴向力之比;最后,确定了定子橡胶寿命为一年及泵端压差12 MPa条件下,双泵参数匹配方案,对所选方案进行了寿命和排量对比分析,分析了不同泵端压差对下螺旋杆泵极限排量的影响。研究结果表明:针对特定推力球轴承和十字联轴节,下螺杆泵与上螺杆泵之间所受轴向力之比为1.41∶1;螺杆泵定子橡胶寿命一定,双泵的排量相比于单螺杆泵有了很大的提升,平均增长率在50%左右。 展开更多
关键词 双螺杆泵采油系统 双泵匹配约束条件 等寿命理念 轴向力和工作扭矩 泵端压差 寿命和排量分析
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轴向柱塞泵机械效率可靠性及灵敏度研究 被引量:2
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作者 杜尊令 张义民 《计算机集成制造系统》 EI CSCD 北大核心 2023年第2期522-531,共10页
为了提高轴向柱塞泵的运行效率和工作可靠性,提出轴向柱塞泵机械效率的可靠性设计方法。通过分析单个柱塞副瞬时理论转矩和瞬时摩擦转矩损失,建立整个轴向柱塞泵瞬时机械效率模型;结合四阶矩技术,提出柱塞泵机械效率可靠性分析方法,并采... 为了提高轴向柱塞泵的运行效率和工作可靠性,提出轴向柱塞泵机械效率的可靠性设计方法。通过分析单个柱塞副瞬时理论转矩和瞬时摩擦转矩损失,建立整个轴向柱塞泵瞬时机械效率模型;结合四阶矩技术,提出柱塞泵机械效率可靠性分析方法,并采用Monte Carlo法验证了所提方法的准确性和时效性;运用可靠性灵敏度分析方法分析了各设计变量变化对轴向柱塞泵可靠性的影响。研究结果表明,轴向柱塞泵机械效率可靠度随缸体转角周期性变化,柱塞数为9时缸体转角为20°的可靠度最低,柱塞数为8时缸体转角为0°和45°的机械效率可靠度最低,各随机变量在任一瞬时对可靠性的影响趋势各不相同,对敏感参数适当进行控制可以提高柱塞泵机械效率的可靠度。 展开更多
关键词 轴向柱塞泵 瞬时机械效率 转矩损失 可靠性 灵敏度
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轴向柱塞式电液泵能量转化效率研究 被引量:22
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作者 付永领 李祝锋 +1 位作者 祁晓野 范殿梁 《机械工程学报》 EI CAS CSCD 北大核心 2014年第14期204-212,共9页
电液泵是一种将电动机与液压泵共转子、共壳体进行高度融合的新型液压动力单元,与传统通过联轴器联结的电动机-泵组相比,具有结构紧凑、功率重量比大等优点。作为新型高集成液压源,电液泵的能量转化效率是业内关注的一个重要指标。介绍... 电液泵是一种将电动机与液压泵共转子、共壳体进行高度融合的新型液压动力单元,与传统通过联轴器联结的电动机-泵组相比,具有结构紧凑、功率重量比大等优点。作为新型高集成液压源,电液泵的能量转化效率是业内关注的一个重要指标。介绍轴向柱塞式电液泵的结构与工作过程,分析轴向柱塞式电液泵的电磁、机械、容积各部分损耗,建立相应各部分效率与总效率的计算模型,在此基础上给出轴向柱塞式电液泵定子与转子间油隙损耗、各部分效率以及总效率随转速、压力、温度变化的曲线,分析电液泵的油隙损耗对电液泵效率的影响以及电液泵能量转化效率的特点。理论计算与试验结果的对比验证表明,计算模型是准确的。计算结果表明,研究的这种轴向柱塞式电液泵在油温50℃、转速4 500 r/min、压力28MPa时的油隙损耗为1.85%,低于电动机-泵组中电动机的风扇与机械损耗;其总效率为81.2%,高于电动机-泵组的总效率。 展开更多
关键词 电液泵 轴向柱塞式电液泵 轴向柱塞泵 电动机 效率 油隙损耗
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轴向柱塞式电液泵的油隙损耗与机械效率 被引量:4
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作者 李祝锋 邵云滨 +1 位作者 付永领 范殿梁 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2014年第6期769-774,共6页
介绍了轴向柱塞式电液泵的结构与工作过程,分析了轴向柱塞式电液泵的各种机械损耗,建立了其机械效率的计算模型,在此基础上给出了定子与转子间油隙损耗与机械效率随转速、压力、温度变化的曲线.计算结果表明,研究的这种轴向柱塞式电液... 介绍了轴向柱塞式电液泵的结构与工作过程,分析了轴向柱塞式电液泵的各种机械损耗,建立了其机械效率的计算模型,在此基础上给出了定子与转子间油隙损耗与机械效率随转速、压力、温度变化的曲线.计算结果表明,研究的这种轴向柱塞式电液泵在油温50℃、转速4 000 r/min、压力28 MPa时的油隙损耗只占总机械功率的1.737%,大大低于传统电机-泵组中电机的风扇与机械损耗,此时电液泵机械效率为92.6%,高于传统电机-泵组.机械效率的提高使得轴向柱塞式电液泵的总效率高于传统电机-泵组.分析了油隙长度对其损耗的影响,结果表明该电液泵油隙长度仍有减小的空间. 展开更多
关键词 电液泵 轴向柱塞式电液泵 轴向柱塞泵 油隙损耗 机械效率
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油液特性对柱塞泵流量脉动影响的仿真分析 被引量:12
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作者 高彦军 谷立臣 焦龙飞 《中国机械工程》 EI CAS CSCD 北大核心 2017年第11期1333-1338,共6页
为研究油液特性对轴向柱塞泵流量脉动的作用规律,对比分析了油液的压缩性、黏性、含气量和流动状态与柱塞泵流量脉动之间的关系,运用FLUENT流场仿真软件对轴向柱塞泵的运动特性进行模拟。数值仿真结果表明:压缩性对泵源流量脉动的影响最... 为研究油液特性对轴向柱塞泵流量脉动的作用规律,对比分析了油液的压缩性、黏性、含气量和流动状态与柱塞泵流量脉动之间的关系,运用FLUENT流场仿真软件对轴向柱塞泵的运动特性进行模拟。数值仿真结果表明:压缩性对泵源流量脉动的影响最大,油液黏性的影响次之,含气量的影响较小,流动状态的影响最小,以上因素的影响程度占油液特性影响的比例分别为86.8%、9.45%、3.59%、0.16%;油液的黏性对泵容积效率的影响最大,压缩性的影响次之,含气量的影响较小,流动状态的影响最小。模型的准确性得到了实验验证,为开展柱塞泵动力学建模以及机电液系统全局耦合性能仿真分析提供了理论依据。 展开更多
关键词 轴向柱塞泵 流量脉动 容积效率 压缩性 油液黏性 流场仿真
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空气源热泵热水机组全年综合能效评定 被引量:52
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作者 吴静怡 江明旒 +2 位作者 王如竹 许煜雄 孙鹏 《制冷学报》 CAS CSCD 北大核心 2009年第5期14-18,共5页
空气源热泵热水机组全年运行在制热模式,机组能效比受室外气象条件的影响较大,并且热水需求量通常还会随季节和用户用水习惯而有所差别,仅仅用名义工况下的机组运行能效比,难以准确客观地反映出其实际的节能效果。这里主要针对空气源热... 空气源热泵热水机组全年运行在制热模式,机组能效比受室外气象条件的影响较大,并且热水需求量通常还会随季节和用户用水习惯而有所差别,仅仅用名义工况下的机组运行能效比,难以准确客观地反映出其实际的节能效果。这里主要针对空气源热泵热水机组分布较为集中的长江沿线及以南地区,结合各地区气象条件及用户实际应用情况,引入全年综合运行工况来对空气源热泵热水机组的实际能效进行评定,确定更合理的评价标准。分析结果表明,采用全年综合运行工况作为参照工况点对空气源热泵热水机组进行综合能效评定更加客观严谨。 展开更多
关键词 热工学 空气源热泵热水机组 全年综合运行工况 能效比 热水需求
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油液压缩性影响柱塞泵容积效率的机理分析 被引量:5
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作者 焦龙飞 谷立臣 +1 位作者 许睿 罗恒星 《机械科学与技术》 CSCD 北大核心 2017年第5期704-710,共7页
为揭示油液压缩性对轴向柱塞泵容积效率的影响机理,在考虑由于压缩性引起的困油和压缩容积损失的基础上,建立了描述柱塞泵容积效率的数学模型。基于建立的数学模型利用FLUENT对柱塞泵内部流场进行了仿真分析,分析结果表明:困油与压缩容... 为揭示油液压缩性对轴向柱塞泵容积效率的影响机理,在考虑由于压缩性引起的困油和压缩容积损失的基础上,建立了描述柱塞泵容积效率的数学模型。基于建立的数学模型利用FLUENT对柱塞泵内部流场进行了仿真分析,分析结果表明:困油与压缩容积损失随着压力和转速的升高而增大,因油液压缩损失的容积效率在总容积效率损失中的比重随着转速和负载的增大而增大。仿真与实验结果基本吻合,相对误差小于2.1%,验证了机理的正确性。 展开更多
关键词 轴向柱塞泵 压缩性 困油现象 数学模型 容积效率
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轴向柱塞泵效率特性半经验参数化建模方法 被引量:9
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作者 许睿 谷立臣 《农业机械学报》 EI CAS CSCD 北大核心 2016年第7期382-390,共9页
针对轴向柱塞泵效率特性机理分析不够深入、全工况下机理模型精度差,提出一种基于力学正反问题的柱塞泵效率特性半经验参数化建模方法。首先考虑油液可压缩性导致的容积损失和倾覆力矩作用下形成的柱塞副库伦摩擦力,建立了流量、转矩损... 针对轴向柱塞泵效率特性机理分析不够深入、全工况下机理模型精度差,提出一种基于力学正反问题的柱塞泵效率特性半经验参数化建模方法。首先考虑油液可压缩性导致的容积损失和倾覆力矩作用下形成的柱塞副库伦摩擦力,建立了流量、转矩损失机理模型;然后分析了系统参数非线性变化规律,在此基础上利用试验数据拟合机理模型中复合参数经验公式;最后导出柱塞泵效率特性半经验参数化模型。对比分析表明:复合参数经验公式显著提高了机理模型精度,流量、转矩损失半经验参数化模型平均相对误差分别为3%和1%。结果分析表明:复合参数以及对应损耗能量比重直观反映了柱塞泵效率特性,极限工况下柱塞泵效率下降以及容积效率和机械效率无法再次提升的根本原因在于油液有效体积弹性模量、库伦摩擦因数等系统参数的急剧变化。 展开更多
关键词 轴向柱塞泵 效率特性 半经验参数化模型 参数识别
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基于FLUENT的轴向柱塞泵综合性能研究 被引量:3
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作者 焦龙飞 谷立臣 +2 位作者 许睿 郭佳 王柯渊 《机床与液压》 北大核心 2016年第21期114-118,共5页
为提高柱塞泵的容积效率、减少振动和噪声、延长工作寿命,合理地确定柱塞泵工作转速范围。运用FLUENT对轴向柱塞泵的运动特性进行仿真分析,研究了柱塞泵的转速和负载与脉动、效率、噪声三者之间的关系。仿真结果表明:柱塞泵的容积效率... 为提高柱塞泵的容积效率、减少振动和噪声、延长工作寿命,合理地确定柱塞泵工作转速范围。运用FLUENT对轴向柱塞泵的运动特性进行仿真分析,研究了柱塞泵的转速和负载与脉动、效率、噪声三者之间的关系。仿真结果表明:柱塞泵的容积效率随着转速升高而升高,随着负载增大而减小;流量脉动率随着负载的增大而增大,随着转速的增大而减小;噪声随负载和转速的增大而增大。仿真结果与实验结果基本吻合,通过实验数据验证了仿真分析的准确性,为柱塞泵动力学建模以及机电液系统全局性能仿真分析提供了可信方法。 展开更多
关键词 轴向柱塞泵 容积效率 转速 流量脉动 噪声
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基于自动化测控平台对外啮合齿轮泵的总效率研究 被引量:7
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作者 田立勇 郑跃鹏 王慧 《流体机械》 CSCD 北大核心 2020年第2期12-16,共5页
为了探索不同工况条件对外啮合齿轮泵总效率的影响,同时实现对齿轮泵工况条件的精确控制,对现有的手动加载试验台进行了信号采集,实现了加载试验台自动化测控的功能。通过大量的数据采集,绘制了齿轮泵总效率与转速、压力和温度之间的三... 为了探索不同工况条件对外啮合齿轮泵总效率的影响,同时实现对齿轮泵工况条件的精确控制,对现有的手动加载试验台进行了信号采集,实现了加载试验台自动化测控的功能。通过大量的数据采集,绘制了齿轮泵总效率与转速、压力和温度之间的三维关系图。试验结果表明,压力对齿轮泵的总效率影响较大,压力从2.5 MPa增加到15 MPa时,总效率提高了将近40%。 展开更多
关键词 齿轮泵 总效率 工况条件
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水压轴向柱塞泵静特性实验分析 被引量:2
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作者 安维胜 陈留 +2 位作者 邓斌 王国志 柯坚 《机床与液压》 北大核心 2003年第4期279-280,共2页
本文介绍了水压实验台的研制和实验系统的组成、功能及控制方式 ,并运用该系统对实际的水压轴向柱塞泵作了静特性实验 。
关键词 水压 轴向柱塞泵 总效率 容积效率
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