蓄能器

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  • energy accumulator
蓄能器蓄能器
  1. 提出以蓄能器代替大尺寸液压缸作为油液与能量的储存与释放装置,提供瞬时的高压大流量油液,完成实验台的机械、液压及监控系统的方案设计、元件选型和搭建工作。

    Energy accumulator was used as the device to store and release the oil and energy , which can provides instant high pressure .

  2. 油压夯管锤蓄能器与活塞振动耦合性的数学解析

    Mathematic Analysis of Coupling Between the Energy Accumulator and the Piston Vibration of the Hydraulic Pipe Rammer

  3. 蓄能器在AGC液压系统中吸收液压冲击的研究

    Research on Hydraulic Accumulator Absorbing Pressure Pulsation in the AGC Hydraulic System

  4. 然后利用Matlab软件编制了蓄能器参数选择的程序,给出蓄能器最佳充气压力的选择方法。

    By utilizing Matlab software accumulator preferences procedure is established and method of selecting the best accumulator inflation pressure is presented .

  5. 针对具体车型,利用Matlab对CPS能量回收系统中变量泵/马达,蓄能器,飞轮影响汽车性能指标的参数进行仿真计算。

    Simulation on parameters of pump / motor , accumulation and flywheel with Matlab .

  6. 另外利用增量式PID控制算法对变频调速液压电梯动态特性进行了计算机仿真和实验研究,并且与带有蓄能器的变频调速液压电梯进行了节能对比。

    Furthermore , the speed control of VVVF hydraulic elevator is studied using PID control law and numerical simulations are carried out with the Simulink of Matlab .

  7. 液压混合动力车(HydraulicHybridVehicle,简称HHV)再生制动系统由液压泵/马达、蓄能器、反馈元件以及控制系统组成。

    The regenerative braking system of the hydraulic hybrid vehicle ( HHV ) is made up of pump / motor , accumulators , feedback components and control system .

  8. 根据液压AGC伺服油源的特点,提出了蓄能器参数的确定方法。

    From the concrete characteristic of the servo hydraulic power supply for a hydraulic AGC system , the selection method of the parameters of accumulator was put forward .

  9. 本文考虑容腔内油的压缩性,在线性范围内,对滞弹性模型(AnelasticModel)进行了修正,并以仿真和实验的方法对蓄能器液压缸系统的特性进行了分析。

    In this paper , considering the compressibility of the hydraulic oil in the motor , the anelastic model is modified , and the characteristics of the hydraulic motor-accumulator system are analyzed with simulation and experiment .

  10. 液压振动台网管谐振分析及其蓄能器减振研究变电站中电网谐波谐振分析与EMTP建模仿真

    Research on Hydraulic Quiver System and Shock Absorption by Accumulator ; Resonant Analysis and EMTP Model Simulation of Grid Harmonics in Transformer Substation

  11. 在室温情况下,当蓄能器单次快速增压至60MPa后,其最终压力只有55MPa;

    At room-temperature , accumulator can get a final pressure of 55 MPa with single quick plenum to 60 MPa .

  12. XC-17型蓄能器充液阀的研制

    Development of xc-17 accumulator charging valve

  13. 介绍了ASC液压抽油机全局参数的匹配方法,给出了油缸、蓄能器、油泵和电机的参数计算公式与计算方法。

    The matching method of overall parameters of ASC hydraulic pumping units is presented , by which the calculating formulas and methods for the parameters of cylinder , accumulator , oil hydraulic pump , and motor are proposed .

  14. 阐述了基于VVVF控制、蓄能器做液压配重和活塞拉缸技术的节能原理,分析了系统中蓄能器、主电动机和负载这3个主要功率部件的运行状况。

    The energy-saving principle was discussed using VVVF control , the accumulator for hydraulic counterweight and the piston-cylinder lifting technology . The working status the main power elements including the accumulator , the main electromotor and the load in the system were analyzed .

  15. 采用20MPa的充气压力,蓄能器皮囊在最大工作压力下体积变化小于公称体积的75%,仍有较大的补压余量。

    When precharge pressure is 20 MPa , bladder volume change is less than 75 % of nominal volume under maximum working pressure , while some compensation margin is still preserved .

  16. 通过分析西德HYDAC公司的产品特点,指导用户如何更经济、合理地选择和使用蓄能器产品。

    According to the characteristics of the product manufactured by HYDAC company ( West Germany ), we advise consumers how to select and use the accumulator more economically and reasonably .

  17. 模拟试验表明:采用过流技术可以实现浮游微生物在线浓缩取样;当取样水深为6000m,蓄能器预充压力大于25MPa时,获得的样品6h内压力下降不超过原位压力的2%。

    Practical experiments shows that with overflowing technique concentrated sampling can be realized , when sampling depth is 6 km and accumulator precharge pressure is great than 25 MPa , pressure decrease of sample in 6 h is less than 2 % compared with original pressure .

  18. 液压蓄能器性能试验系统的节能改进

    Improvement of energy saving in performance test system of hydraulic accumulator

  19. 液压凿岩机高压蓄能器的设计

    The Design of the High-power Storage Device for Hydraulic Quarrying Machines

  20. 波动载荷作用下液压驱动牵引车辆的蓄能器配置

    Analysis of Accumulator Matching on Hydraulic Driving Vehicle at fluctuant loading

  21. 采用蓄能器吸收压力脉动的回路配置与分析

    The Circuit Disposition and Analysis of Absorbing Pressure Pulsation by Accumulator

  22. 蓄能器与车辆静液压储能传动系统特性及匹配分析

    Research on Matching between Accumulator and Hydrostatic Transmission System of Vehicle

  23. 增压式蓄能器型脉冲试验装置的分析与实践

    Analysis and Practice of an Accumulator-type Impulse Testing Device with Booster

  24. 用蓄能器和差动缸组成能量回收式举升系统

    Power Recycled Hydraulic Lift System Consisting of Accumulators and Differential Cylinders

  25. 蓄能器在液压源回路中的应用与研究

    The Application and Research on Energy Accumulators in Hydraulic Pressure Circuits

  26. 压力波动随蓄能器容积增大而降低;随换向阀换向频率增高而下降。

    Pressure fluctuation decreases with increasing accumulator volume and switching frequency .

  27. 车辆液压驱动系统中蓄能器与数学模型

    Accumulator in Hydraulic Drive System of Vehicles and Its Mathematic Model

  28. 蓄能器回路的动态特性分析模块;

    The module of analysis of dynamic characteristics for accumulator circuit ;

  29. 转炉余热系统蓄能器安装技术

    Installation of the heat accumulator for the converter waste heat system

  30. 指向式旋转导向钻井系统旋转轴力学模型自导向的重锤式蓄能器

    Mechanics Model of Rotation Axis in Directive Rotary Steerable Drilling System