arrester discharge capacity 避雷器放电容量 ; 避雷婆电容量
theoretical discharge capacity 理论排量
actual discharge capacity 实际排量
First discharge capacity 首次放电容量 ; 周平均容量
charge and discharge capacity 充放电比容量
zero discharge capacity 无废水排放能力
safety discharge capacity 安全过水能力
Rated discharge capacity 额定排气量
However, the lithium manganese oxide doped aluminium has lower discharge capacity and poor cycle property.
掺铝锉锰氧则放电容量较低,且循环性能也较差。
参考来源 - 液相法制备锂离子电池正极材料LiMnAnnealing process improved activation property and discharge capacity.
快淬热处理改善了合金的活化性能,提高了最大放电容量。
参考来源 - 快淬及热处理LPC贮氢电极材料的研究The discharge capacity of a pressure spillway tunnel is a key problem involving its scale and sizes,and it also is a hydraulic issue which needs to be solved in design.
有压泄水洞的泄流能力是一个涉及其规模、尺寸的关键问题,是设计中必须解决的水力学问题。
参考来源 - 出口段收缩式有压泄水洞流量系数的试验分析All these works are related to the questions of the computation of discharge capacity and the determination of the flood levels.
上述工程均涉及到复式断面河道的过流能力计算以及洪水位确定问题。
参考来源 - 复式河道一维数值模拟Once the discharge capacity decreased, the flow which can be discharged reduced either. This results in drainage hindrance and submerging of the upstream district, as well as the subgrade soaking for a long time.
由于水库修建之后,在水库回水区影响范围内的涵洞出口水位可能会抬高,从而有可能造成涵洞内水流过流状态的变化,一旦涵洞过流能力减小,排水不畅,就会导致上游地区的淹没,还可能造成路基长时间浸泡,承载能力下降,从而跨塌,后果不堪设想。
参考来源 - 既有涵洞下游修建水库对涵洞的影响The results indicated that the maximum discharge capacity, the terminal velocity and the largest permissible fullness ratio of110mm plastic stack were 6.255L/s, 4.201m/s,and 0.18 respectively when there was only stack vent.
试验结果表明:①仅设伸顶通气管条件下,φ110塑料排水立管最大通水能力为6.255L/s,立管终限流速为4.201m/s,其最大允许充水率α为0.18。
参考来源 - UPVC塑料排水立管最大允许充水率α值的试验研究·2,447,543篇论文数据,部分数据来源于NoteExpress
The "extension" means an increase of the discharge capacity of an existing outlet.
扩大,是指已有入河排污口排污能力的提高。
Therefore, almost no diminishment of discharge capacity occurs, even after many discharge and charge cycles.
因此,几乎没有放电能力被削弱时,即使经过多次放电和充电周期。
The main cause of discharge capacity decrease was the impedance of metal surface increased due to cell reaction.
电池反应所引起的负极金属表面阻抗的增加,是放电容量减小的主要原因。
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