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热电联产机组热、电负荷优化分配 被引量:20
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作者 黄廷辉 柴胜凯 +2 位作者 庞顺 胡洪华 相里红波 《热力发电》 CAS 北大核心 2010年第12期1-4,共4页
针对太原钢铁(集团)有限公司(太钢)自备电厂热电联产汽轮机组(简称联产机组)热力系统,建立了联产机组特性关系式和热、电负荷优化分配模型,通过对机组运行数据的优化计算,表明优化分配与常规操作相比,可节约蒸汽47.83t/h。提出了联产机... 针对太原钢铁(集团)有限公司(太钢)自备电厂热电联产汽轮机组(简称联产机组)热力系统,建立了联产机组特性关系式和热、电负荷优化分配模型,通过对机组运行数据的优化计算,表明优化分配与常规操作相比,可节约蒸汽47.83t/h。提出了联产机组热、电负荷优化分配方法。 展开更多
关键词 联产机组 热、电负荷 优化分配
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热电厂背压机、抽凝机供热分配经济性分析
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作者 洪庆 《电力系统装备》 2021年第5期28-29,共2页
浙江某大型工业集聚区热电企业现有2×300 MW燃煤抽凝供热机组,额定供热量2×410 t/h,以及4×57 MW燃煤背压母管制供热机组,额定供热量4×325 t/h。当热网负荷低于热电厂最大供热能力时,热电厂抽凝机组与背压机组的热... 浙江某大型工业集聚区热电企业现有2×300 MW燃煤抽凝供热机组,额定供热量2×410 t/h,以及4×57 MW燃煤背压母管制供热机组,额定供热量4×325 t/h。当热网负荷低于热电厂最大供热能力时,热电厂抽凝机组与背压机组的热、电负荷分配方式将直接影响机组煤耗以及全厂总利润。针对该问题,通过建立一套煤耗、利润实时计算系统,经理论分析并通过机组调整试验,得出了具有指导意义的热电负荷分配方案。 展开更多
关键词 抽凝供机组 背压供机组 热、电负荷分配 经济性 利润
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某企业天然气分布式能源项目配置方案及经济性分析 被引量:1
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作者 黄强 《能源与环境》 2020年第1期25-26,共2页
针对某材料企业的天然气分布式能源项目,分析冷、热、电负荷的设计系统优化及设备配置方案的确定,并对项目的技术经济进行分析和评价。
关键词 分布式能源 冷、热、电负荷 经济性分析
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New type steam turbine for cogeneration
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作者 He Jianren Yang Qiguo Xu Damao 《Engineering Sciences》 EI 2010年第3期81-84,共4页
A concept of energy saving & efficiency improving from cold source for cogeneration steam turbine was discussed herein. A new type "NCB" cogeneration steam turbine was proposed,which could considerably i... A concept of energy saving & efficiency improving from cold source for cogeneration steam turbine was discussed herein. A new type "NCB" cogeneration steam turbine was proposed,which could considerably increase heat supply capacity,thermal efficiency and electric power. Taking 300 MW cogeneration steam turbine as an example,the results show that heat supply capacity reaches the maximum,i.e. increases by 30 %,thermal efficiency is improved by 12 %,and electric power is enhanced by 15 MW during peak heat load. 展开更多
关键词 cold source new type cogeneration steam turbine energy saving emission reducing economic effect
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Exergetic Performance Analysis of a Cogeneration Plant at Part Load Operations
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作者 B.T. Aklilu S.I. Gilani 《Journal of Energy and Power Engineering》 2010年第10期1-8,共8页
A cogeneration plant can run at off-design due to change of load demand or ambient conditions. The cogeneration considered for this study is gas turbine based engine consists of variable stator vanes (VSVs) compress... A cogeneration plant can run at off-design due to change of load demand or ambient conditions. The cogeneration considered for this study is gas turbine based engine consists of variable stator vanes (VSVs) compressor that are re-staggered for loads greater than 50% to maintain the gas turbine exhaust gas temperature at the set value. In order to evaluate the exergetic performance of the cogeneration, exergy model of each cogeneration component is formulated. A 4.2 MW gas turbine based cogeneration plant is analysed for a wide range of part load operations including the effect of VSVs modulation. For loads less than 50%, the major exergy destruction contributors are the combustor and the loss with the stack gas. At full load, the exergy destructions in the combustor, turbine, heat recovery, compressor and the exergy loss with stack gas are 63.7, 14.1, 11.5, 5.7, and 4.9%, respectively. The corresponding first and second law cogeneration efficiencies are 78.5 and 45%, respectively. For comparison purpose both the first and second law efticiencies of each component are represented together. This analysis would help to identify the equipment where the potential for performance improvement is high, and trends which may aid in the design of future plants. 展开更多
关键词 Gas turbine variable stator vanes COGENERATION exergy destruction part load performance.
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