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700℃超超临界火力发电机组高温压力管道用材研究进展 被引量:7
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作者 赵远 岳庚新 《焊管》 2016年第9期26-29,33,共5页
介绍了美国、日本及欧洲等国家700℃超超临界火力发电机组及压力管道高温用材的开发现状,并对目前国际上700℃超超临界火力发电机组较有竞争力的几种镍基合金候选材料进行了对比分析。结合我国在相关领域的研究情况,分析了目前我国700... 介绍了美国、日本及欧洲等国家700℃超超临界火力发电机组及压力管道高温用材的开发现状,并对目前国际上700℃超超临界火力发电机组较有竞争力的几种镍基合金候选材料进行了对比分析。结合我国在相关领域的研究情况,分析了目前我国700℃超超临界火力发电机组研究中存在的问题。指出Inconel 740H镍基合金的持久强度和抗腐蚀性能最好,但其焊接接头的高温长时性能研究尚不成熟,电站高温合金材料的选择和研发尚未完全解决,该问题仍将是世界各国的研究重点。 展开更多
关键词 管道 700 超超临界 A—usc 高温合金材料
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700℃先进超超临界机组概念设计方案研究 被引量:5
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作者 罗建松 叶勇健 《热力发电》 CAS CSCD 北大核心 2022年第8期99-107,共9页
为大幅提高当前燃煤发电机组的发电效率,使700℃先进超超临界机组的净效率达到50%以上,对700℃超超临界机组概念设计方案进行了研究,分析了概念设计方案涉及的蒸汽初参数、机组容量、再热次数、主机选型方案、热力系统拟定、主要辅机选... 为大幅提高当前燃煤发电机组的发电效率,使700℃先进超超临界机组的净效率达到50%以上,对700℃超超临界机组概念设计方案进行了研究,分析了概念设计方案涉及的蒸汽初参数、机组容量、再热次数、主机选型方案、热力系统拟定、主要辅机选型和主厂房布置方案。结果表明:700℃超超临界机组概念设计方案推荐机组容量为660 MW,初参数为35 MPa/700℃/720℃的一次再热机组;锅炉拟采用超超临界参数变压运行螺旋管圈直流炉,单炉膛、一次中间再热、采用切圆燃烧方式、平衡通风、固态排渣、全钢悬吊结构塔式锅炉、露天布置;汽轮机拟采用单轴、一次中间再热、四缸四排汽;热力系统推荐采用带变频发电机的BEST小机回热系统,机组采用十二级非调整抽汽;主厂房推荐采用二列式、侧煤仓、汽轮机高位布置方案。700℃超超临界机组概念设计方案对我国建设更加高效和清洁的火力发电厂具有重要的参考意义。 展开更多
关键词 超超临界发电 700超超临界机组 概念设计
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Energy-Saving Optimization Study on 700℃ Double Reheat Advanced Ultra-Supercritical Coal-Fired Power Generation System
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作者 WANG Jing DUAN Liqiang +3 位作者 YANG Jinfu YANG Ming JING Yutian TIAN Liguo 《Journal of Thermal Science》 SCIE EI CAS CSCD 2023年第1期30-43,共14页
700°C double reheat advanced ultra-supercritical power generation technology is one of the most important development directions for the efficient and clean utilization of coal.To solve the great exergy loss prob... 700°C double reheat advanced ultra-supercritical power generation technology is one of the most important development directions for the efficient and clean utilization of coal.To solve the great exergy loss problem caused by the high superheat degrees of regenerative steam extractions in 700°C double reheat advanced ultra-supercritical power generation system,two optimization systems are proposed in this paper.System 1 is integrated with the back pressure extraction steam turbine,and system 2 is simultaneously integrated with both the outside steam cooler and back pressure extraction steam turbine.The system performance models are built by the Ebsilon Professional software.The performances of optimized systems are analyzed by the unit consumption method.The off-design performances of optimization systems are analyzed.The results show that:the standard power generation coal consumption rates of optimization systems 1 and 2 are decreased by 1.88 g·(kW·h)^(–1),2.97 g·(kW·h)^(–1)compared with that of the 700°C reference system;the average superheat degrees of regenerative steam extractions of optimized systems 1 and 2 are decreased by 122.2°C,140.7°C(100%turbine heat acceptance condition),respectively.The comparison results also show that the performance of the optimized system 2 is better than those of the optimized system 1 and the 700°C reference system.The power generation standard coal consumption rate and the power generation efficiency of the optimized system 2 are about 232.08 g·(kW·h)^(–1)and 52.96%(100%turbine heat acceptance condition),respectively. 展开更多
关键词 700 advanced ultra-supercritical(A-usc) double reheat cycle extraction steam superheat degree unit consumption method system optimization
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Structure improvement and strength finite element analysis of VHP welded rotor of 700℃ USC steam turbine
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作者 Jinyuan SHI Zhicheng DENG +1 位作者 Yong WANG Yu YANG 《Frontiers in Energy》 SCIE CSCD 2016年第1期88-104,共17页
The optimized structure strength design and finite element analysis method for very high pressure (VHP) rotors of the 700℃ ultra-super-critical (USC) steam turbine are presented. The main parameters of steam and ... The optimized structure strength design and finite element analysis method for very high pressure (VHP) rotors of the 700℃ ultra-super-critical (USC) steam turbine are presented. The main parameters of steam and the steam thermal parameters of blade stages of VHP welded rotors as well as the start and shutdown curves of the steam turbine are determined. The structure design feature, the mechanical models and the typical position of stress analysis of the VHP welded rotors are introduced. The steady and transient finite element analysis are implemented for steady condition, start and shutdown process, including steady rated condition, 110% rated speed, 120% rated speed, cold start, warm start, hot start, very hot start, sliding-pressure shutdown, normal shutdown and emergency shutdown, to obtain the temperature and stress distribution as well as the stress ratio of the welded rotor. The strength design criteria and strength analysis results of the welded rotor are given. The results show that the strength design of improved structure of the VHP welded rotor of the 700℃ USC steam turbine is safe at the steady condition and during the transient start or shutdown process. 展开更多
关键词 700 ultra-super-critical unit steam turbine very high pressure rotor structure strength design strength design criteria finite element analysis
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700℃超超临界燃煤发电机组系统设计研发现状 被引量:22
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作者 张燕平 蔡小燕 +1 位作者 金用成 黄树红 《热能动力工程》 CAS CSCD 北大核心 2012年第2期143-148,259,共6页
对国外700℃先进超超临界燃煤发电机组系统设计的研发现状进行了分析和综述。介绍了3种先进的汽水循环系统以及电站及组件的优化设计方案。同时提出了可以进一步开展的研究内容,旨在推动我国700℃先进超超临界燃煤发电技术的研究工作。
关键词 先进超超临界发电机组 燃煤发电 700 汽水循环 优化设计
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添加钨对USC 141镍基合金力学性能的影响 被引量:6
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作者 王鲁 杨钢 +1 位作者 钱天才 汪力 《钢铁研究学报》 CAS CSCD 北大核心 2014年第2期41-47,共7页
参照USC 141镍基合金的化学成分,进行了热力学模拟计算。计算结果表明:钨能提高M23C6和M6C的转变温度,并促进γ′相和M6C的析出。在USC 141化学成分基础上,添加钨元素取代部分钼元素,设计了一种试验型镍基合金(HR 100)。通过室、高温力... 参照USC 141镍基合金的化学成分,进行了热力学模拟计算。计算结果表明:钨能提高M23C6和M6C的转变温度,并促进γ′相和M6C的析出。在USC 141化学成分基础上,添加钨元素取代部分钼元素,设计了一种试验型镍基合金(HR 100)。通过室、高温力学性能测试、持久试验和析出相分析,对其力学性能和析出相进行了研究。试验结果表明:经相同热处理后,试验型镍基合金HR 100中的γ′相和M6C的析出明显多于USC 141,使其室温综合力学性能、高温强度以及持久寿命均明显优于USC 141,但同时大量析出的M6C会降低其高温和持久塑性。通过调整钨和钼的含量来调节M6C相的析出量,可以作为一种提高USC 141室、高温综合性能的方法。 展开更多
关键词 usc 141 700 力学性能 持久寿命 高温塑性
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