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1)  electrically-fired
电发火
2)  spark plug ignition
电火花发火<火>
3)  thermal power generation
火力发电
1.
Large quantity of water intake of thermal power generation and the latest norm of water intake have been described in the paper.
简述了火力发电用水量、取水量浩大 ,最新的取水定额指标 ;详述了 10项节水技术及其节水技术的节水率比较以及 2 0 0 5年的节水目标、措施和示例。
2.
The methods of energy - sowing and loss reducing in thermal power generation in our country are analyzed from several aspecis in this paper such as regulating the structure of the thermal power generating units, improving the efliciency of the generating units in service term and lowering the ratio of the power utility rate in the plants.
从调整火电机组的结构,提高服役机组的效率,降低厂用电率等几个方面,分析了我国火力发电节能降耗的途径。
4)  thermal power
火力发电
1.
Life cycle emission inventories for the fuels consumed by thermal power in China;
中国火力发电燃料消耗的生命周期排放清单
2.
Analyzes about Thermal power plant s coal management s method;
关于火力发电厂的煤炭管理的方法分析
3.
On the basis of analyzing the features of thermal power logistics system, the paper puts forward some measures of controlling logistics costs in thermal power plants.
物流成本是火力发电企业成本的重要组成部分。
5)  Firing current
发火电流
1.
In this paper, the effect of distributive homogenity of bridgewire resistance on the firing current of electric detonators is studied and the testing results are also analysed and discussed.
文中分析了桥丝电阻分布的均匀性对电雷管发火电流的影响,并对试验结果作了分析和讨论。
2.
The presence of minimum value of initiation impulse in K-I curve is proved by the examination of firing current(I)and initiation impulse(K)of commercial electric detonators.
本文通过工业电雷管发火电流(I)和引燃冲量(K)的试验研究,证明了K-I关系曲线中极小值(即最小引燃冲量)的存在;补充解释了GB8031标准中引燃冲量的特定含义;提出了应确定最小引燃冲量和最大不引燃冲量指标的重要性;同时阐明了用升降法测量百毫秒发火电流(I_(100))过程中,发火概率(P)取值应从0。
6)  thermal power plant
火力发电
1.
The paper gives solutions to the problem that the maintenance of the screw cinder cleaner needs shutting the boiler in a thermal power plant, which makes it practical for a shutting door to be set in the boiler and this is proven in practice.
针对火力发电厂燃煤锅炉使用螺旋捞渣机不能实现不停炉维修之问题提出了解决方案。
补充资料:电火花
分子式:
CAS号:

性质:电极间击穿放电时的强烈流柱。大量电火花汇集成电弧。电火花的温度高达摄氏数千度,不仅能直接引起可燃物燃烧,还能使金属熔化、飞溅,构成二次火源。产生电火花的处所和操作过程有(1)刀开关、断路器、接触器等电气设备操作过程中。(2)直流电动机的电刷与换向器的滑动接触处、绕线式异步电动机的电刷与滑环的滑动接触处。(3)电气设备或电气线路的绝缘发生过电压击穿、发生短路、故障接地、导线断开或接头松动时。(4)熔断器的熔体断开。(5)雷电放电、静电放电、电磁感应放电等。

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