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1)  power generation with surplus steam
余汽发电
2)  waste heat power generation
余热发电
1.
Fly ash melting and waste heat power generation system using coal as fuel was developed for the secondary pollution of MSW incineration fly ash.
为消除垃圾焚烧飞灰带来的二次污染,建立了以煤粉为燃料的飞灰熔融固化和余热发电系统,利用AspenPlus对系统进行了计算,得出各操作参数如混合比、过量空气系数、一次风率和二次风温度等的合理取值范围,为后续实验研究工作打下了基础;计算模拟结果表明,该系统是完全可行的,且运行成本较电力式或其他燃料式熔融炉小得多,具有较好的经济效益,很适合将来在我国推广。
2.
Using Stirling cycle theory,this paper designs a waste heat power generation set.
利用斯特林循环原理,设计了一种汽车尾气余热发电装置,不仅可以有效的利用废热,节省能源,提高效率,同时有利于减少热污染和环境保护。
3)  Power generation by waste heat
余热发电
1.
A brief discussion on problems of power generation by waste heat from low temperature gas in cement kiln concerned the owner;
浅谈水泥窑中低温余热发电业主所关心的问题
2.
But for the mesothermal and low temperature power generation by waste heat introduced distributing hot air,the power generated by unit heat enery is then increased greatly——by distributing the hot air entered the preheater,the ratio of gas and solid is decreased,the heat efficiency of the pr.
采用热气体分流的中低温余热发电技术,即:将入预热器系统的热气体予以分流,降低了预热器内气固比,提高了预热器系统热效率;同时使原预热器出口烟气中的低级热能转移至温度较高的烟气中,热能得到升级,可大幅度提高其余热发电量。
3.
In combination with real practices of power generation by waste heat,the author analyzes and discusses the control,improvement and usage of the method adopted during industrial water break so as to ensure a stable and smooth operation and management.
结合余热发电的实际,分析探讨了工业水断水时,为确保生产平稳运行的改进控制方法,并将其应用于实际生产。
4)  Waste heat generation
余热发电
1.
With the rapid development of micro electronic and computer technology, the compute based excitation system has been utilized in the waste heat generation.
励磁调节是发电装置的重要控制设备 ,随着微电子技术和计算机技术的飞速发展 ,微机励磁控制在硫酸装置余热发电中得到了应用。
5)  cogeneration [英][kəu,dʒenə'reiʃən]  [美][ko,dʒɛnə'reʃən]
余热发电
1.
15 MW cogeneration projection of Suzhou Jinmao Cement Plant;
苏州金猫水泥厂15MW余热发电工程设计
2.
As poor cooling effect of the previous recycling equipment in cogeneration by SA surplus heat, a sprayed cooler with rotary atomizer is adopted.
硫酸余热发电原循环冷却水装置降温效果差 ,改用高效喷射旋转雾化冷却器 ,介绍其构造、工作原理及运行效果。
3.
To introduce the comprehensive utilization of the 30 MVA hermetic calcium carbide furnace by the numbers, specially present the feasibility of cogeneration of hermetic calcium carbide furnace and its analysis of investment benefit, etc.
系统介绍了30 MVA密闭电石炉热能综合利用,重点阐述余热余气发电可行性、投资效益分析等,指出此技术的核心在于炉气净化和发电设备技术参数的合理选择,并展望了余热发电技术在电石及铁合金冶金行业应用的前景。
6)  waste heat generating
余热发电
1.
The paper introduces the principle of waste heat generating technology, the ficility type selection and the steam utility program.
介绍了硫酸装置中余热发电技术的原理、设备选型及蒸汽利用方案等,运行结果表明该技术具有显著经济效益。
2.
This paper analysed the way of improving energy efficiency,reducing energy cost and improving economy benefit,discussed the project of energy saving technology alteration for waste heat generating,and cogeneration of heat power and cool(CCHP)and also analysed their feasibility,advantage,economy benefit and society benefit.
本文围绕如何提高企业能源利用率、降低能耗、提高经济效益进行分析,探讨了余热发电及热电联产的节能技术改造方案,并对其可行性、先进性、经济效益及社会效益进行了分析。
补充资料:余热发电
余热发电
waste heat generation

   利用生产过程中多余的热能转换为电能的技术。余热发电不仅节能,还有利于环境保护。余热发电的重要设备是余热锅炉。它利用废气、 废液等工质中的热或可燃质作热源,生产蒸汽用于发电。由于工质温度不高,故锅炉体积大,耗用金属多。用于发电的余热主要有:高温烟气余热,化学反应余热,废气、废液余热,低温余热(低于200℃)等。此外,还有用多余压差发电的;例如,高炉煤气在炉顶压力较高,可先经膨胀汽轮发电机继发电后再送煤气用户使用。
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