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Radiation between cell tube and air feed tube and heat transfer by convection and conduction was also included in this model.

在传热模型中,除考虑传导和对流换热外,也考虑了电池和空气进气管之间的辐射换热。

Radiation between cell tube and air feed tube and heat transfer by convection and conduction were also included in this model.

在传热模型中,除了考虑传导和对流换热外,也考虑了电池和空气进气管之间的辐射换热。

And lithium batteries and nickel-metal hydride batteries, which is great hot topics.

而锂电池和镍氢电池,正是目前大热的题材。

In paper effect of oxygen and carbon action on minority carrier lifetime in thermal process of mc-Si cell and properties of Si_3N_4 film and effects of antirefle-ction and passivation were studied.

为此本文重点研究了多晶硅片在电池制造热工艺中氧碳的行为及其对少子寿命的影响;并研究了氮化硅薄膜的性能及对多晶硅电池的减反射及钝化作用。

To analyze the thermal safety of Al/AgO battery in torpedo tube after launching failure, numerical simulation of the conjugate forced convection heat transfer was conducted in the condition of launch failure and battery activation by using the computational fluid dynamics software FLUENT.

为分析鱼雷发射失效后Al/AgO电池在发射管中的热安全性,基于计算流体力学方法,应用计算流体力学软件FLUENT,对鱼雷发射失效后Al/AgO一次电池激活情况下管内强制对流耦合传热进行了数值模拟。

Then the relations of structures and properties of microporous membranes used in lithium-ion batteries were discussed.

介绍了锂离子电池隔膜用微孔膜的制备原理与结构,重点叙述了熔融拉伸法和热致相分离法制备微孔膜的基本原理和膜结构影响因素,并在此基础上讨论了锂离子电池隔膜用微孔膜结构与性能之间的关系。

Due to the cathode oxidizability and electrolyte instability, some primary reactions, such as electrolyte decomposition, cathode materials dissolution and self-heating redox reaction, arised at the cathode/electrolytes interface in Li-ion batteries, which deteriorated the electrochemical properties and safety of the batteries.

锂离子电池中的正极/电解液界面反应:电解液的氧化分解、正极材料腐蚀溶解及正极材料的自热氧化还原反应等,均能对电池的电化学性能和安全特性产生不良影响。

Calcium in Positive powder of thermal-activated battery measured by atomic absorption spectroscopy with Nitrogen Monoxide was studied and reported in this paper.

0引言在热激活电池的制造过程中,发现正极粉的结构及其化学成分对电池性能有明显的影响。

According to the experimental results, both the conducting area and material of current collector slices have great influence on the performance of micro PEMFC, especially the former one. The increment of cell's performance is finite by increasing the gas reheats temperature. The performance is better for open ratio 75% compared with 50% and 67%. The concentration polarization is improved by increasing the air flow rate at high current density and if the GDL diffusive capability in the latter cell could be promoted, the differences between these two cells' performances would be reduced.

由实验结果可知,集电片的导电面积与材料对於电池性能有显著的影响,尤其是前者;对於增加反应气体的再热温度,微型燃料电池增加的性能有限;双极板开孔率75%相较於开孔率为50%与67%有最佳的性能曲线;增加阴极气体空气的流量,可以改善高电流情况下的浓度极化现象,所以若我们能增加气体扩散层的扩散能力,则可以减少两者的性能差距。

In the case of solar panels, photovoltaic cells or solar cell semiconductors produce electricity when they heat up from absorbing the sun's energy.

如太阳能电池板,光伏电池或太阳能电池的半导体生产电力热时,吸收了来自太阳的能量。

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从有历史以来,英国,在此地早期居住的是凯尔特人,已经被征服了三次。

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