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炼钢厂节电技术措施
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作者 张其龙 《冶金设备管理与维修》 2013年第3期37-38,共2页
分析了工厂电耗构成状况。针对电耗大的关键重点设备增加了节电设施;对用电设备实施变频改造;降低大功率用电设备运行频率;强化检修、停机管理;加强中夜班用电管理,经过持续探索研究和采取节电措施,降低单位产量电耗。
关键词 电耗持续 管控 节能降耗
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Green heating:Theory and practice 被引量:1
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作者 YANG YongPing LI PeiFeng +3 位作者 GE ZhiHua TIAN Jia WANG NingLing SONG ZhiPing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第12期2003-2015,共13页
Energy conservation in heating systems has great influence on overall sustainable development strategy. Heating technology, especially combined heat and power(CHP, cogeneration), has been attracting increased interest... Energy conservation in heating systems has great influence on overall sustainable development strategy. Heating technology, especially combined heat and power(CHP, cogeneration), has been attracting increased interest and rapidly developing in recent years. However, the theoretical potential of heating from the perspective of thermodynamics has not been clearly illustrated. This paper presents a theoretical analysis of heating systems based on the 1st and 2nd laws of thermodynamics using the specific fuel consumption(SFC) analysis method, clarifies the theoretical potential limitation of heating systems and illustrates the process of reversible heating on the basis of the total energy system. A novel concept(green heating, GH) and a new indicator(green-heating index, GH Index) are scientifically defined to characterise different options for heating and to quantitatively evaluate their fuel consumption levels. Thereafter, the fuel consumptions of four typical space heating modes are compared and discussed to present the application of GH theory and validate the power of the proposed concept and index. Furthermore, two different CHP technologies are analyzed with an instantiation case, and a novel CHP system is recommended, which may scientifically support the development of heating technology and further improve the processes of energy-saving and CO2 reduction. 展开更多
关键词 green heating combined heat and power space heating specific fuel consumption EXERGY THERMODYNAMICS
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