电池组件

  • 网络module;Solar cells;Battery pack;Solar Module
电池组件电池组件
  1. 微型太阳电池组件的小电流问题分析

    Analysis on the Low Current in the Mini-module of Solar Cells

  2. 该测试仪以微秒级窄脉冲光源为太阳模拟器,可测量单体太阳电池、太阳电池组件及太阳电池方阵。

    This test instrument can be used to test solar cells modules and arrays with microsecond puls solar simulator .

  3. 本田队Sport的低重心是通过使用一个模块化的方法,燃料电池组件的包装。

    Honda FC Sport 's low center of gravity is obtained by using a modular approach to fuel cell component packaging .

  4. 太阳电池组件上纳米多孔SiO2减反射膜的制备和增透性能研究

    Study on the process and properties of nano-porous SiO_2 anti-reflection film applied in the solar module

  5. 日本也是锂离子(Li-ion)等类型电池组件的重要产地。

    Japan is a crucial site for the manufacture of many parts for lithium-ion ( Li-ion ) and other battery packs .

  6. PVB层压硅太阳电池组件

    PVB laminated silicon solar cell module

  7. Fluent软件对聚光硅电池组件在接收器里的热性能的模拟结果表明,液浸冷却方法可以使电池组件维持低而均匀的温度分布。

    The thermal performance of the silicon CPV solar module in the designed receiver was simulated with Fluent software . The results established that low and uniform cell temperature can be achieved .

  8. 经比较得出,选择性发射极太阳电池组件使用密封剂silicone封装可提高其短波响应,即提高了量子效率。

    By comparison , it is concluded that , using silicone can improve blue response of selective emitter solar cell module . In another word , using silicone can improve the quantum efficiency of module .

  9. 为了研究在户外工作条件下太阳电池组件的实际工作性能,在一天过程中的太阳电池组件V-I特性、组件温度、环境温度和太阳辐照度被测试。

    To evaluate PV module performance under actual illumination and temperature operating conditions over the course of a day , V-I characteristics of PV module , operating temperature , ambient temperature and solar radiation were measured .

  10. 实验表明,PDMS封装技术能够有效解决封装的密封性、燃料输运导管固定、电池组件间的接触性等问题,并具有长期可靠性。

    The results demonstrate that the PDMS assembly technology is able to solve the issues such as effectiveness of the cell package , the fixation of the feeding holes , the contact between layers and , at the same time , has long-term durability .

  11. 尽管目前风光互补发电系统推广应用很快、需要量大,但由于太阳能电池组件价格太高(每WP30~50元)。

    Despite the current landscape to promote the application of hybrid generating system very quickly , the demand for large , but the solar cell component costs are too high ( per WP30 ~ 50 million ) .

  12. 新型菲涅尔线聚焦聚光太阳电池组件研究

    A New Concentrators System with Line - focus Fresnel Lens

  13. 中空玻璃式太阳电池组件的热性能研究

    The thermal character of PV module encapsulated with insulating glass

  14. 一种方便准确的太阳电池组件的测试系统

    A convenient and accurate measurement system of solar cell modules

  15. 太阳能电池组件层压机加热系统的设计与试验

    The Design and Test Solar Cell Module Laminator Heating System

  16. 非晶硅太阳电池组件封装技术及可靠性研究

    Technique of encapsulation and reliability of amorphous silicon solar modules

  17. 平板式与槽式聚光太阳能电池组件性能分析

    Performance Analysis on Solar Cell Modules of Flat-Plate and Trough Concentrating Photovoltaic System

  18. 多晶硅太阳电池组件及封装材料的研究

    Polycrystalline silicon solar cell module and encapsulation material

  19. GB/T14008-1992海上用太阳电池组件总规范

    General specification for sea-use solar cell modules

  20. 该系统可以在无交流电源的现场对太阳电池组件和阵列进行快速测试,既可直接利用自然光源,也可利用自带光源测量。

    The system can use either natural light source directly or the extern light source .

  21. 蓄冷降温式太阳电池组件供电供热的实验研究

    Experimental study of power and heat supply for building with cool-storage mode solar photovoltaic module

  22. 其研究结果对太阳电池组件的设计和制造具有重要参考价值。

    This result has an important reference value on the solar cell module design and manufacturing .

  23. 本文所研究的自动化系统为太阳能电池组件的生产提供了一套完整的自动化解决方案。

    The Automation System studied in this paper provides a complete automation solution for solar cell modules .

  24. 太阳电池组件自然通风冷却和电热联用的数值模拟研究

    Numerical Simulation on the Natural Convection Cooling of PV Module and Hybrid PV / T Solar System

  25. 从太阳电池组件背板材料着手,研究了增强太阳电池的散热途径。

    This paper starts from the solar cell component backplane materials , researching the way to enhance cooling .

  26. 建筑及其环境的原因可造成串、并联在起的同样的光伏电池组件形成不同的输出功率。

    The conditions of building and its environment can make the series-wound or shunt-wound photovoltaic modules have some difference .

  27. 因此降低太阳电池组件材料的热阻,加大太阳电池冷却的温差成为重要的任务。

    Therefor both decreasing material thermal resistance of the module and increasing temperature difference in cooling become very important . 3 .

  28. 研制成的多晶硅太阳电池组件的平均效率为9.5%,最高达10.9%。

    The average efficiency for encapsulated polysilicon solar cell in the module is 9.5 % , the highest efficiency is 10.9 % .

  29. 本文报道了一种运用单晶硅太阳电池组件电解水生产实验室应用的超纯氢(99.999%)的试验系统。

    This paper reports a newly developed photovoltaic driven water electrolysis system which produces purified hydrogen ( 99 . 999 % ) .

  30. 使用高转换率的单晶式多晶式电池组件。面心立方晶体高次孪晶化为一次旋转对称关系

    Highest efficient mono-cystalline or poly-crystalline solar modules . ON REDUCTION OF THE HIGH ORDER TWINNING IN FCC STRUCTURE TO A SINGLE ROTATION RELATIONSHIP