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铝电解槽集气结构的数值模拟研究 被引量:1
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作者 李雪娇 杨洪英 +1 位作者 赵鹤飞 胡红胜 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第7期966-971,995,共7页
为了降低铝电解烟气的无组织排放,提高电解槽集气效率,采用数值模拟的手段对电解槽原集气结构中的内部流场分布情况进行模拟.以此为基础,研究了下烟道集气结构改造方案,并开发了新型上烟道集气结构.结果表明:原下烟道集气结构压力损失为... 为了降低铝电解烟气的无组织排放,提高电解槽集气效率,采用数值模拟的手段对电解槽原集气结构中的内部流场分布情况进行模拟.以此为基础,研究了下烟道集气结构改造方案,并开发了新型上烟道集气结构.结果表明:原下烟道集气结构压力损失为363 Pa,集气均匀性差,烟道积灰严重,集气效率低.下烟道集气结构改造简单,投资低,改造后可显著提高集气效率,但压力损失和积灰现象没有明显改善.新型上烟道集气结构改造较为复杂,投资较高,但改造后集气效率显著提高,同时压力损失显著降低至187 Pa,烟道没有明显积灰. 展开更多
关键词 集气结构 数值模拟 无组织排放 铝电解槽 集气效率.
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铝电解槽上部集气结构的密封保温改进措施 被引量:1
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作者 黄卫平 《轻金属》 CSCD 北大核心 2014年第9期47-52,共6页
从剖析铝电解槽上部集气结构密封系统现状及缺陷入手,分析改进密封保温措施在铝电解槽热平衡控制和降低物料消耗中的重要作用。结合电解槽生产管理实践,研究改进上部集气结构密封的方法、措施,通过密封保温措施的改善,某铝电解企业电解... 从剖析铝电解槽上部集气结构密封系统现状及缺陷入手,分析改进密封保温措施在铝电解槽热平衡控制和降低物料消耗中的重要作用。结合电解槽生产管理实践,研究改进上部集气结构密封的方法、措施,通过密封保温措施的改善,某铝电解企业电解槽热稳定性明显增强,经济技术指标得到了明显优化,对企业节能降耗摆脱困境发挥了重要作用。 展开更多
关键词 铝电解槽 集气结构 密封保温 研究应用
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Tectonic evolution of the Changling fault basin and its relationship to oil and gas accumulation 被引量:2
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作者 Wang Jianqiang Yang Guang +3 位作者 Xue Linfu Zhang Jianwei Bai Ye Li Wenbo 《Mining Science and Technology》 EI CAS 2011年第3期427-432,共6页
The Changling fault depression passed through three stages of evolution: a period of faulting, a period of subsidence, and an inversion period. The fault lifted the whole area and the formation was eroded during the l... The Changling fault depression passed through three stages of evolution: a period of faulting, a period of subsidence, and an inversion period. The fault lifted the whole area and the formation was eroded during the late Yingcheng formation, the late Nenjiang formation, and the late Mingshui formation. The denudation quantity of eight wells located in the study area is estimated by the interval transit time method and by the formation trend extension method using seismic and drilling data. Inversion back stripping technology with de-compaction correction was used to restore the original sedimentary thickness step by step and to recover the burial history at a single well. Two profiles were selected for the recovery and study of the tectonic evolution. The study confirmed that the primary major gas bearing structure formed due to thermal shrinkage lifting during the late Yingcheng formation. Successive development in a pattern during the late Mingshui formation led to the formation of the primary gas pool. Vertical differential uplift during the late Nenjiang formation formed the Fulongquan structure during the late Paleogene. At this same time a secondary gas pool formed. A large scale reverse developed late in the Mingshui formation that provided the impetus for formation of a secondary gas pool. It is thought that the migration and accumulation of oil and gas was controlled by lithologic character, fracture, and structure. The local uplift in the vicinity of the hydrocarbon recession is most conducive to the collection of hydrocarbon gas. 展开更多
关键词 Changling fault depressionDenudation quantityTectonic evolutionOil and gas accumulation
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