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转炉汽包供水与蒸气回收的改进
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作者 张子峰 《冶金设备管理与维修》 2008年第1期32-33,共2页
介绍了济钢为节约能源研发的“燃气——蒸气联合循环发电”,在充分考虑现场工艺要求的情况下,对冷却转炉炼钢高温烟气的循环冷却水汽包的供水与产生的蒸气回收中存在的问题进行了改进,收到了良好效果。
关键词 蒸气发电 汽包供水 氧枪 冶炼
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异步发电机在差压发电中的应用
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作者 王旭光 《电世界》 1990年第6期10-11,共2页
关键词 异步电机 差压发电 蒸气发电
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CCPP发电机组纯低热值高炉煤气燃烧的实践 被引量:1
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作者 王太祥 刘伟 +1 位作者 赵博 李渤涵 《冶金设备管理与维修》 2010年第4期1-4,共4页
介绍了CCPP混合燃气-蒸气联合循环发电机组完全使用低热值高炉煤气实现安全稳定发电所采取的技术措施及其实践,开创了国内外同类型机组在使用3200~3596kJ/m^3之间低热值燃料试验的先河,并取得了宝贵经验,可供同行业借鉴。
关键词 CCPP混合燃气-蒸气联合循环发电机组 低热值高炉煤气 实践
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西门子大型燃机发电机启动变频器
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作者 强磊 《机电信息》 2010年第18期23-23,37,共2页
为了缓和电网缺电状况,增强电网调峰能力,同时减少对环境的污染,我国加大了天然气的应用,从国外引进了一批大型燃气—蒸气联合循环发电机组。其中在西门子燃机机组启动过程中,启动变频器(SFC)发挥了重要作用,现主要对SFC的作用、工作原... 为了缓和电网缺电状况,增强电网调峰能力,同时减少对环境的污染,我国加大了天然气的应用,从国外引进了一批大型燃气—蒸气联合循环发电机组。其中在西门子燃机机组启动过程中,启动变频器(SFC)发挥了重要作用,现主要对SFC的作用、工作原理、控制方式做了介绍。 展开更多
关键词 燃气—蒸气联合循环发电机组 SFC 控制方式
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燃机轻油改烧重油后余热锅炉的对策
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作者 沈强 《余热锅炉》 2001年第4期1-9,共9页
关键词 燃气蒸气联合循环发电 轻油 重油 余热锅炉
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Performance and Economic Study of Oxy-fuel Gas Turbine Power Plant Utilizing Nuclear Steam Generator 被引量:1
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作者 K. Oshima Y. Uchiyama 《Journal of Energy and Power Engineering》 2010年第8期24-31,共8页
The authors propose a new closed cycle oxy-fuel gas turbine power plant that utilizes a nuclear heat generator. A pressurized water reactor (PWR) is designed to supply saturated steam to an oxy-fuel gas turbine for ... The authors propose a new closed cycle oxy-fuel gas turbine power plant that utilizes a nuclear heat generator. A pressurized water reactor (PWR) is designed to supply saturated steam to an oxy-fuel gas turbine for a specific power output increase The saturated steam from the reactor can have lower pressure and temperature than those of an existing PWR. In this study, the authors estimated plant performances from a heat balance model based on a conceptual design of a hybrid plant and calculated the generating costs of the proposed plant from the Japanese cost data of an existing PWR plant and an liquefied natural gas (LNG) combined cycle gas turbine plant. The generating efficiency of an oxy-fuel gas turbine plant without a nuclear steam generator is estimated to be less than 35%. Based on this efficiency, with a nuclear steam generator contributing to the power output of the proposed hybrid plant, the corresponding generating efficiency is estimated to be around 45%, even if the steam conditions are lower than in an existing PWR. The generating costs are 15-20% lower than those calculated from the weighted heat performances of both an oxy-fuel gas turbine plant without a nuclear steam generator and an existing PWR plant. 展开更多
关键词 Natural gas nuclear energy hybrid power plant gas turbine oxy-fuel combustion.
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Integration of a Gas Fired Steam Power Plant with a Total Site Utility Using a New Cogeneration Targeting Procedure
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作者 Sajad Khamis Abadi Mohammad Hasan Khoshgoftar Manesh +2 位作者 Marc A.Rosen Majid Amidpour Mohammad Hosein Hamedi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第4期455-468,共14页
A steam power plant can work as a dual purpose plant for simultaneous production of steam and elec-trical power. In this paper we seek the optimum integration of a steam power plant as a source and a site utility sys-... A steam power plant can work as a dual purpose plant for simultaneous production of steam and elec-trical power. In this paper we seek the optimum integration of a steam power plant as a source and a site utility sys-tem as a sink of steam and power. Estimation for the cogeneration potential prior to the design of a central utility system for site utility systems is vital to the targets for site fuel demand as well as heat and power production. In this regard, a new cogeneration targeting procedure is proposed for integration of a steam power plant and a site utility consisting of a process plant. The new methodology seeks the optimal integration based on a new cogenera-tion targeting scheme. In addition, a modified site utility grand composite curve(SUGCC) diagram is proposed and compared to the original SUGCC. A gas fired steam power plant and a process site utility is considered in a case study. The applicability of the developed procedure is tested against other design methods(STAR? and Thermoflex software) through a case study. The proposed method gives comparable results, and the targeting method is used for optimal integration of steam levels. Identifying optimal conditions of steam levels for integration is important in the design of utility systems, as the selection of steam levels in a steam power plant and site utility for integration greatly influences the potential for cogeneration and energy recovery. The integration of steam levels of the steam power plant and the site utility system in the case study demonstrates the usefulness of the method for reducing the overall energy consumption for the site. 展开更多
关键词 INTEGRATION steam power plant site utility COGENERATION optimization
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Low Steam Condition Heat Generator Combined with Advanced Oxy-Fuel Combustion LNG Gas Turbine for Power Generation
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作者 Kanji Oshima Yohji Uchiyama 《Journal of Energy and Power Engineering》 2012年第8期1226-1232,共7页
We propose a novel concept for power generation that involves the combination of a LSCHG (low-steam-condition heat generator), such as a light water nuclear reactor or a biomass combustion boiler, with an advanced c... We propose a novel concept for power generation that involves the combination of a LSCHG (low-steam-condition heat generator), such as a light water nuclear reactor or a biomass combustion boiler, with an advanced closed-cycle oxy-fuel combustion gas turbine-a type of complex and efficient oxy-fuel gas turbine. In this study, a LSCHG is designed to heat water to saturated steam of a few MPa, to assist in the generation of the main working fluids, instead of a compressor used in the advanced oxy-fuel gas turbine. This saturated steam can have a lower pressure and temperature than those of an existing nuclear power plant or biomass-fired power plant. We estimated plant performances in LHV (lower heating value) basis from a heat balance model based on a conceptual design of a plant for different gas turbine inlet pressures and temperatures of 1,300 ℃ and 1,500 ℃, taking into account the work to produce O2 and capture CO2. While the net power generating efficiencies of a reference plant are estimated to be about 52.0% and 56.0% at 1,300 ℃ and 1,500 ℃, respectively, and conventional LSCHG power plant is assumed to have an efficiency of about 35% or less for pressures of 2.5-6.5 MPa, the proposed hybrid plant achieved 42.8%-44.7% at 1,300 ℃ and 47.8%-49.2% at 1,500 ℃. In the proposed plant, even supposing that the generating efficiency of the LNG system in the proposed plant remains equal to that of the reference plant, the efficiency of LSCHG system can be estimated 37.4% for 6.5 MPa and 33.2% for 2.5 MPa, even though the LSHCG system may be regarded as consisting of fewer plant facilities than a conventional LSCHG power plant. 展开更多
关键词 Gas turbine oxy-fuel combustion hybrid power plant generating efficiency conceptual design.
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Optimal Analysis of Pure Low-Temperature Waste Heat Recovery Generation System
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作者 X.B. Wang Q.X. Zhao J.P. Si S.E. Hui T.M. Xu 《Journal of Energy and Power Engineering》 2011年第1期10-16,共7页
In this paper, a detailed thermodynamic analysis of the pure low-temperature waste heat recovery generation system is presented. The parameters affecting the system performance are compared to obtain the most signific... In this paper, a detailed thermodynamic analysis of the pure low-temperature waste heat recovery generation system is presented. The parameters affecting the system performance are compared to obtain the most significant ones; furthermore, parameter values are optimized for the largest power generating capability of the system. It is found that the most important parameters are inlet flue gas temperature, steam pressure and the pinch point temperature difference. There is an optimal superheated steam pressure value for giving the maximum generation power per unit flue gas. With the increase of inlet flue gas temperature, the generating power increases and the optimized steam pressure rises as well. However, with increase in pinch point temperature difference, the generating power decreases and the optimized steam pressure decreases as well. The theoretical calculation provides a theoretical basis for the parameters optimization in the design of the pure low-temperature waste heat recovery eeneration swtem 展开更多
关键词 Waste heat recovery generation optimal analysis steam pressure pinch point.
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饱和蒸汽驱动的螺杆动力机背压供汽发电系统
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作者 董光武 《轻工设计(长沙)》 1997年第1期1-8,共8页
以工业锅炉低压饱和蒸汽做动力,驱动研制的杆动力机,达到节能指标的背压供汽发电系统。
关键词 饱和蒸汽 螺杆动力机 背压发电 蒸气发电
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煤气化联合循环发电
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作者 马治邦 《当代矿工》 1998年第2期20-20,共1页
近20年来,燃煤电厂采用了超高参数、中间再热、大型化、自动化等措施,使发电热效率由30%提高到40%。但是,再进一步提高蒸气发电的热效率,在技术上是困难的,经济上也不合算。
关键词 联合循环发电 煤气化 燃煤电厂 发电热效率 联合循环电厂 余热锅炉 大型化 蒸气发电 发电技术 发电成本
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加压还原气氛下脱硫基础研究
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作者 仲兆平 Marnie Telfer +2 位作者 金保升 周宏仓 蔡宁生 《能源研究与利用》 2002年第2期20-23,共4页
文章在参考国内外现有研究成果的基础上对加压还原脱硫过程进行了基础研究。研究工作在一台自制的加压热重分析仪上进行 ,研究内容包括压力、温度、H2 S浓度等因素对反应速度的影响 ,获得了加压还原气氛下南京石灰石脱硫反应的动力学参... 文章在参考国内外现有研究成果的基础上对加压还原脱硫过程进行了基础研究。研究工作在一台自制的加压热重分析仪上进行 ,研究内容包括压力、温度、H2 S浓度等因素对反应速度的影响 ,获得了加压还原气氛下南京石灰石脱硫反应的动力学参数及相应的动力学方程。 展开更多
关键词 第二代PFBC 脱硫 反应动力学 流化床燃烧 燃气-蒸气联合循环发电 研究现状 碳化器 制备 装置
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