储能密度

  • 网络energy density
储能密度储能密度
  1. 与课题组的原有飞轮方案相比,其储能密度提高了111%。

    The energy density of flywheel increased 111 percent which compared with originally flywheel project .

  2. 为了获得较高的储能密度,飞轮转子通常由高强度碳纤维复合材料及轻质合金制造。

    In order to obtain higher energy density , the flywheel is made of high strength CFRP ( carbon fiber reinforced plastic ) and aluminum alloy .

  3. 以上结果验证了本文所建FEM与MC方法的耦合模型、介观储能密度分布模型与回复模型的合理性,能较好地模拟实际变形材料的退火过程。

    The results mentioned above certificate the rationality of the coupling model of FEM and MC method , the mesoscopic stored energy density distribution model and the recovery model constructed in present thesis .

  4. 微囊的储能密度为116.5J/g,包覆量为53.74%(wt),平均颗粒大小为8.26μm,适用于相变调温纤维。

    The average size of microcapsules was 8.26 μ m and energy density was 116.5J/g .

  5. 目前飞轮转子最高转速达到20万转每分,储能密度也达到134Wh/kg,其理论储能密度甚至高达306Wh/kg。

    Lately , the limited speed of flywheel rotor has been increased to 200,000 rpm , and the energy storage density has been increased to 134 Wh / kg . Moreover , the theoretic energy storage density could reached 306 Wh / kg .

  6. 经电气性能测试表明它具有高储能密度和快速充放电的能力,频谱阻抗(EIS)分析显示它具有优良的阻抗特性和频率特性。

    According to the electric performance test , it shows that the capacitor has the high energy density and the ability of quick charging and discharging . And Electrical Impedance Spectroscopy ( EIS ) curves indicate that it has good characteristics of impedance and frequency .

  7. 主要研究了高储能密度多层陶瓷电容器(MLC)在不同充放电频率、充电电压、充放电占空比和放电反峰系数等条件下的寿命特性,并对其失效机理进行分析。

    This paper mainly discusses the life characteristic and failure mechanism of the multilayer ceramic capacitor ( MLC ) under various working conditions such as charge-discharge frequency , charge voltage , charge-discharge duty radio and discharge inverse peak factor .

  8. 一种新结构自愈式高储能密度脉冲电容器的实验研究

    Experimental Study on a New Structure Self-healing High Energy Density Pulse Capacitor

  9. 提高脉冲电容器储能密度的新方法的研究

    Study on New Methods of Increase of Energy Storage Density of Pulsed Power Capacitors

  10. 对高储能密度电容器复合介质材料作了研究。

    Composite dielectric materials for capacitors of high energy storage density has been studied .

  11. 基于高储能密度电容退化数据的可靠性评估

    Reliability assessment for capacitor bank with high specific energy storage based on degradation information

  12. 复合材料飞轮结构与储能密度

    Composite material flywheel structure and energy-storing density

  13. 高储能密度复合绝缘材料的研究

    Study on high energy density composite materials

  14. 高储能密度电容器无论在国防还是在民用领域都有巨大的应用前景。

    High energy density capacitors have dramatic application prospect both in defense and civil field .

  15. 大容量高储能密度电化学电容器的研究进展

    The development of the study on the electrochemical capacitor of high capacitance and energy density

  16. 本文针对提高这两类电容器的储能密度进行了一些创新性探索。

    This dissertation researches on some new methods to improve these two kinds of capacitors .

  17. 高储能密度金属化膜脉冲电容器是惯性约束聚变装置的关键元器件,由于其自愈特性,在短时间内很难得到它的失效数据。

    The metallized film pulse capacitor is a key component of the inertial confinement laser fusion facility .

  18. 为提高飞轮的储能密度,需采用合适的转子材料和合理的转子结构。

    In order to increase energy-storing density of flywheel , appropriate rotor material and reasonable structure should be used .

  19. 神光Ⅲ强激光能源模块高储能密度电容器的快速保护

    Fast Protection for Capacitor Bank with High Specific Energy Storage in SG - ⅲ High Power Laser Energy Module

  20. 虽然此类电池更安全,但分析人士表示,由于达不到其他锂离子技术的储能密度,它们的应用受到了限制。

    But while such batteries are safer , analysts say they lack the energy density of other lithium-ion technologies , limiting their uses .

  21. 设计出的预应力飞轮在现有材料及结构尺寸下,可以达到140Wh/kg的高储能密度指标。

    With same material and structure size , the new prestressed flywheel can reach an energy density as high as 140Wh / kg .

  22. 电能是电磁轨道炮的能量来源,所以具有高储能密度和快速充电特性的脉冲功率电源也得到了迅速发展。

    As the sources of Rail Guns , energy has been also growing rapidly because of its high energy density and fast charging .

  23. 提高膜电容器储能密度最有效途径是提高绝缘介质的电气强度。

    To enhance the electrical strength of the dielectric medium is the most effective way of raise the energy density of the film capacitors .

  24. 通过对分级多孔碳及其复合结构的调控来获得高储能密度超级电容器的电极材料仍然是目前研究的重点。

    Therefore , much effort has been devoted to high-performance electrode materials for supercapacitor by controlling the structures of hierarchically porous carbons and their composites .

  25. 模拟结果表明,光传输效率、储能密度分布和泵浦均匀性与泵浦腔几何构形有关。

    The simulation shows that the transfer efficiency , stored energy density distribution and uniformity of the pump radiation are dependent on the pumping cavity geometry .

  26. 蓄能技术一般有五个要求,储能密度大,变换损耗小,运行费用低,维护较容易,不污染环境。

    Generally , a five requirements for the storage power station : energy density , transform consumption , lower operating costs , easier maintenance , not pollute the environment .

  27. 陶瓷因介电常数高、无老化等优点而适用于高储能密度电容器。

    Ceramic is a feasible dielectric material to make high energy density capacitors with heavy current and long lifetime due to its very high dielectric constant and negligible aging phenomenon .

  28. 多层转子结构突破了单层转子内外半径比的限制,可明显改善转子内部的应力分布,提高飞轮的储能密度。

    Multi-ring rotor structure breaks through restriction of the ratio of inner radii to outer radii , which can evidently improve the distribution of rotor stress and increase flywheel energy-storing density .

  29. 超级电容器具有超大容量和高储能密度,作为一种新型储能元件,在电动车、电磁武器和不间断电源等方面的应用具有很大的潜力。

    Super-capacitor has large capacitance and high energy density as a new-type of energy storage element , which has great potential for applications on electric vehicles , UPS and electromagnetism arms .

  30. 从系统效率、储能密度和系统流程特点等方面进行了全面比较,总结出各系统的优缺点。

    The system efficiency , stored energy density , system configuration of flow and so on are compared generally . Both positive and negative features of all these systems are concluded .