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热电联产机组工业供汽优化控制机理研究 被引量:5
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作者 邓佳 许朋江 +1 位作者 居文平 马汀山 《热力发电》 CAS CSCD 北大核心 2022年第10期130-137,共8页
针对热电联产机组工业供汽引起能耗大幅升高,导致电厂热经济性下降的问题,以某310 MW机组为研究对象,进行EBSILON平台建模模拟和真机试验研究,计算冷段再热蒸汽抽汽(冷再)和热段再热蒸汽抽汽(热再)2种汽源、2.0 MPa/2.5 MPa/3.0 MPa 3... 针对热电联产机组工业供汽引起能耗大幅升高,导致电厂热经济性下降的问题,以某310 MW机组为研究对象,进行EBSILON平台建模模拟和真机试验研究,计算冷段再热蒸汽抽汽(冷再)和热段再热蒸汽抽汽(热再)2种汽源、2.0 MPa/2.5 MPa/3.0 MPa 3种抽汽参数、不同负荷下机组运行状态,分析(火用)损耗特性、能耗临界特性等,得到了工业供汽优化控制机理。结果表明:冷再和热再汽源下,机组热耗率存在差异;工业供汽存在一条能耗临界特性曲线,该曲线对机组经济运行意义重大。只有当机组在该曲线右侧区域工况运行时,工业供汽工况热耗率才小于相同电负荷纯凝工况机组热耗率,工业供汽对降低能耗水平有益,机组热经济性提高;机组在曲线左侧运行时,工业供汽工况热耗率大于纯凝。建议热电厂工业供汽改造时,合理规划各机组间工业供汽流量及汽源参数。 展开更多
关键词 工业供汽 热经济性 (火用)损耗 能耗临界特性 优化控制机理
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Control technology for floor heave of Jurassic soft rock in the Erdos Basin of China: A case study 被引量:7
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作者 WEN Zhi-jie JING Suo-lin +1 位作者 MENG Fan-bao JIANG Yu-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期4051-4065,共15页
The deformation of soft rock roadway caused by floor heave is a major challenge for coal mines in China western mining areas. To achieve security and stability of soft rock roadway, this work considered the headgate a... The deformation of soft rock roadway caused by floor heave is a major challenge for coal mines in China western mining areas. To achieve security and stability of soft rock roadway, this work considered the headgate at panel 11505 of the Yushujing Coal Mine as background. First, based on the limit equilibrium method and slip line field theory,a model of floor heave was established, the mechanism of floor heave control was analyzed, and an optimized support method was proposed. Then, the displacement, stress and failure zones around the surrounding rock with the original and optimized support were studied by FLAC. Finally, the serviceability of the support method was verified by field application. The results showed that the main deformation form of soft rock roadway is floor heave, and 0.5 m is relatively reasonable thicknesses of the inverted arch. The extrusion failure zone and shear failure zone were mainly affected by tensile and shear failure, respectively. The modification of floor and the effective support are key points. The failure zone was consistent between numerical simulation and theoretical calculation. The maximum convergences of floor heave determined by numerical simulation and field measurement were 220 mm and 240 mm, respectively, which were reduced by 55% and 60% compared with the original support, and the convergence between sidewalls decreased considerably. The optimized support method controls the floor heave well. 展开更多
关键词 soft rock roadway floor heave mechanical model control mechanism optimized support
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