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1)  power generation
发电
1.
Experimental study on the co-firing power generation of municipal solid waste and biomass;
城市生活垃圾与生物质混烧发电技术的实验研究
2.
Application of refuse incineration-power generation technology in China;
垃圾焚烧发电技术在我国的应用
3.
Comparative study on biomass power generation technologies;
生物质发电技术分析比较
2)  generation [英][,dʒenə'reɪʃn]  [美]['dʒɛnə'reʃən]
发电
1.
Developing Summarization of Domestic and Intermational Solar Energy PV Generation;
国内外太阳能光伏发电发展综述
2.
The role of new energy generation in power on construction of Qinghai province;
新能源发电在青海省电力建设中的作用
3.
A brief introduce the power generation of waste heat from pre-baked anode processing and the technique of system control.
本文简述了预焙阳极余热发电的工艺流程,及工艺对系统控制的要求,并用DCS系统实现对预焙阳极余热锅炉、软水站、汽轮机、发电机等的重要参数进行检测,对锅炉汽包、主蒸汽、凝结水等实施有效控制,用联锁控制确保系统正常安全运行的方法。
3)  electricity generation
发电
1.
Study on commercial thermoelectric cooling modules for electricity generation;
商用温差电致冷组件用于发电的研究
2.
The development of multi-function power source for electricity generation and MMA controlled by single chip microcomputer;
微机控制的发电、MMA一体化多功能电源
3.
It integrates walking,electricity generation,welding and hosting in a body.
针对全位置自动焊技术在管线中的应用,为解决野外管线施工的流动性、环境恶劣、无电力供应问题,研究一种将行走、发电、焊接、吊装等作业于一身的多功能焊接车。
4)  generate electricity
发电
1.
Summarization on the vortex engine technique applied in coal mine gas generate electricity
应用于煤矿瓦斯发电的涡旋引擎技术概述
2.
Thermoelectric materials used for the conversation between thermal energy and electric energy make it possible to manufacture no pollution, no mechanical moving and high effective equipments which can be used for generate electricity and refrigeration.
热电材料是能够使热能与电能直接相互转化的材料,它的出现为制造无污染、无机械运动、高效率的发电和制冷设备提供了广阔前景。
3.
It can generate electricity through blowing the emitting gas into generator ,it can not only make full use of the energy resources,protect the environment,but also create better economic and social benefits.
为充分利用剩余煤气 ,兖州焦化厂研制开发了直燃式煤气发电技术 ,将放散煤气送入机组发电 ,既充分利用了能源、保护了环境 ,又创造了良好的经济和社会效益。
5)  generating electricity
发电
1.
The flowsheet, project engineering, its operating state and economical benefit of the generating electricity project with waste heat of straight cooler gas in MAGAMG 300m~2 sintering plant were presented in this paper.
本文介绍了马钢300 m~2烧结机带冷余热发电工程的工艺流程,项目建设、生产实践及经济效益等情况。
2.
The characteristics and main treatment methods of municipal domestic waste in China were introduced,the integrated economic benefits of waste incineration and landfill were compared,the main restricted factors and related state policy for waste incineration and generating electricity were analyzed,and optimism foreground for waste incineration and generating electricity in China was pointed out.
介绍了我国城市生活垃圾的特征及其主要处理方法,对垃圾焚烧与填埋的综合效益进行比较,分析制约垃圾焚烧发电的主要因素以及国家对垃圾焚烧发电的相关政策,指出我国城市生活垃圾焚烧发电前景乐观。
3.
The advantages, disadvantages and running performance when utilizing blast furnace gas for generating electricity in the steam turbine aircrew, gas turbine and combined cycle generation, and gas international combustion engine are analyzed.
分析了蒸汽轮机、燃气轮机及其联合循环发电、燃气内燃机这三种高炉煤气发电形式的优缺点及其运行状况。
6)  electric power generation
发电
1.
With the development of science and technology, the power industry has taken the way of covering both electric power generation and heat supply (hereinafter referred as jo.
随着科学技术的提高,电力工业发展已从单一发电方式到了发电、供热的热电联产方式。
2.
On the base of the practical application of biomass distributed energy system of Shanghai Jiaotong University,the paper has introduced a kind of bio-gas electric power generation system that use rice straw as raw material and gas engine as prime motor,and detailedly set forth on the main hardware and software of the system and the way to realize it.
生物质气化发电是采用农业、林业和工业废弃物为原料或城市垃圾为原料进行发电的一种新技术。
3.
This paper gives the composition analysis and heating value of urban household refuse,compares various treatment methods of urban household refuse, draws the conclusion that the refuse gasification treatment can do better, and proposes the technological process of refure gasification and electric power generation.
并给出了垃圾气化发电的工艺过程。
补充资料:发电
发电
power generation
    利用发电动力装置将水能、石化燃料(煤、油、天然气)的热能、核能以及太阳能、风能、地热能、海洋能等转换为电能,以供应国民经济各部门与人民生活之需。发电动力装置按能源的种类分为火电动力装量、水电动力装置、核电动力装置及其他能源发电动力装置。火电动力装置由电厂锅炉、汽轮机和发电机(惯称三大主机)及其辅助装置组成。水电动力装置由水轮发电机组、调速器、油压装置及其他辅助装置组成。核电动力装置由核反应堆、蒸气发生器、汽轮发电机组及其他附属设备组成。
   电能在生产、传送、使用中比其他能源更易于调控,因此,它是最理想的二次能源。发电在电力工业中处于中心地位,决定着电力工业的规模,也影响到电力系统中输电、变电、配电等各个环节的发展。到20世纪80年代末,主要发电形式是火力发电、水力发电和核能发电,三者的发电量占全部发电量的99%以上。火力发电因受煤、石油、天然气资源以及环境污染的影响,就全世界范围而言,在80年代所占比重由70%左右降至64%左右;水力发电因工业发达国家的水资源开发已近90%,故所占比重维持在20%左右;核能发电的比重则呈上升趋势,到80年末已超过15%。这反映出随着石化燃料的短缺,核电将越来越受重视。
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