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浅论UGI水煤气炉高炉温高风量高炭层短循环操作的可行性
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作者 卫国钧 《天津煤气》 1999年第2期36-37,共2页
关键词 UGI 水煤气炉 高炉温 高风量 高炭层 循环 操作
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再论煤气炉“三高一低一短”操作方法
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作者 李永恒 《化工设计通讯》 CAS 1999年第4期15-17,共3页
随着煤气炉生产水平的提高,“三高一低一短’操作法也有了新的发展。该文即通过作者近年实际考察了解到的一些厂家的情况,论述了目前煤气炉“三高一低一短”操作法的现状和成果。
关键词 煤气炉 高风量 高炭层 高温度 小氮肥 合成氨
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浅析φ3.0~φ3.2m造气炉高耗低能的原因
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作者 李五洲 《中氮肥》 2003年第5期29-30,共2页
关键词 氮肥 造气炉 能耗 气化温度 高炭层
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型煤制气炉箅的选择
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作者 徐玉华 《小氮肥》 2010年第11期25-25,共1页
1炉箅布风 (1)多年来,随着造气炉直径扩大,导致炉箅直径也相应增大,使造气炉内的轴向布风和径向布风的均匀性难度增大,经常出现的局部结疤、挂炉、翻炉很大程度上是由于炉箅布风不均匀造成的,仅仅通过提高炭层、延长下行时间等... 1炉箅布风 (1)多年来,随着造气炉直径扩大,导致炉箅直径也相应增大,使造气炉内的轴向布风和径向布风的均匀性难度增大,经常出现的局部结疤、挂炉、翻炉很大程度上是由于炉箅布风不均匀造成的,仅仅通过提高炭层、延长下行时间等控制方法来弥补炉箅设计上的缺陷,并不能从根本上解决上行带出物多、长周期维持炉况稳定困难、吨氨煤耗高、单炉发气量低等问题。 展开更多
关键词 炉算 煤制气 造气炉 布风 炉箅 均匀性 不均匀 高炭层
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Overburden failure and the prevention of water and sand inrush during coal mining under thin bedrock 被引量:7
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作者 Yang Weifeng Xia Xiaohong Zhao Guorong Ji Yubin Shen Dingyi 《Mining Science and Technology》 EI CAS 2011年第5期733-736,共4页
Coal mining under thin bedrock or thick unconsolidated soil layers brings mining problems related to these special geological conditions. The meaning of the term ''thin bedrock'' is defined through the... Coal mining under thin bedrock or thick unconsolidated soil layers brings mining problems related to these special geological conditions. The meaning of the term ''thin bedrock'' is defined through the thick- ness statistics of the coal seam and the bedrock layer. The coal-bearing strata having thick, unconsoli- dated aquifers and thin bedrock located at the Taiping Coal Mine in Shandong province were taken as a geological prototype for subsequent study. The geological, hydro-geological and engineering character- istics of the thin bedrock were analyzed. An engineering geological model was than established. Overbur- den failure and the development of ''Three Zones'' were studied by physical model tests. The rupture pattern and rock failure were analyzed for mining conditions under thin bedrock. The height of the caving zone and the freely flowing water fractured zone of different mining thicknesses were separately calcu- lated. The results show that a mining thickness greater than 3.5 m causes the height of the freely flowing water fractured zone to be sufficient to touch the weathered zone and the bottom of the Quaternary sys- tem aquifer, to various degrees. This, then, would lead to water and sand inrush into the working face. Measures to prevent water and sand flow inrush disasters by eliminating the power source are put fore- word. A field dewatering scheme was designed and observational data were obtained. The dewatering project had an obvious effect and the water level at working face number 8309 dropped to a safe level. The average draw down of the groundwater was observed to be 7.86 m. This showed that the dewatering project played a role in decreasing the hydraulic pressure and ensuring safety mining. 展开更多
关键词 Thin bedrockMining failureWater and sand flow inrushDewatering
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Analysis and control of hydraulic support stability in fully-mechanized longwall face to the dip with great mining height
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作者 华心祝 王家臣 《Journal of Coal Science & Engineering(China)》 2008年第3期399-402,共4页
The working condition of the hydraulic support in working face can be divided into three kinds of situations in the following: roof fall and col,lapse with cavity, advancing support and supporting. Took single suppor... The working condition of the hydraulic support in working face can be divided into three kinds of situations in the following: roof fall and col,lapse with cavity, advancing support and supporting. Took single support with four-pole in Iongwall face to the dip as research object, control method was studied to avoid support instability in three situations mentioned above. Based on these researches, the major factors of influencing on support stability and its controlling measures were put forward. According to specific conditions of working face 1215(3), which is fully-mechanized and Iongwall face to the dip with great mining height in Zhangji Coal Mine, Huainan Mining Group, the effective measures was taken to control supports stability.. 展开更多
关键词 longwall face to the dip fully-mechanized working face with great mining height supports stability control
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