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1.Projected Application and Modelling about Combustion Furnace System (CFS) in a Boiler
膛(CFS系统)燃烧过程的数值模拟及工程应用收藏指正
2.Heavy oil was emulsified by using HPE (high power economizer) as emulsifying agent and a static emulsification device for water-blending combustion The process is simple and efficient The emulsified heavy oil can be finely atomized and fully burn with bright flame,which affords a saving of 10% in oil consumption equivalent to more than 0 8M RMB per year The coking phenomenon of combustion furnace is also alleviated
采用HPE高效节能素为乳化剂、静态乳化器为主要乳化设备的重油掺水乳化燃烧,其工艺简单、重油乳化效果好、乳化重油在燃烧中雾化效果好,火焰明亮,节油率为10%,年节约资金80多万元,并且改善了燃烧结焦状况。 适用于工业化生产的需要,是一项较好的节能降耗技术措施。收藏指正
3.combustion device for industrial furnace
4.New Technologies of Coal Purification Combustion and Ash Furnace Modification
煤净化燃烧及灰渣内改性新技术收藏指正
5.Simulation for Heat Transfer and Combustion in a Boiler Furnace
内传热燃烧过程仿真收藏指正
6.Experimental Study of COM Combustion Process in the Tunnel Furnace
COM在筒型膛中燃烧过程的试验研究收藏指正
7.One-dimensional Mathematical Model and Relevant Simulation for Pulverized Coal Combustion in a Boiler Furnace
内煤粉燃烧一维数学模型及其仿真收藏指正
8.The aluminate phosphor BaMgAl10O17∶Eu2+(BAM)was successfully synthesized by rapid combustion process at 600 ℃ furnace temperature.
应用燃烧法在较低温度(600℃)下,于空气中快速合成BaMgAl10O17∶Eu2+(BAM)荧光体。收藏指正
9.Through the choice of combustion controlling equation, the close of equation group and the decision of boundary condition, it completely introduces the numerical simulation theory with flame combustion on the heating furnace for carrying crude oil.
通过燃烧控制方程的选用、方程组的封闭以及边界条件的确定,系统介绍了原油输运加热煤气有焰燃烧数值模拟的理论基础。收藏指正
10.After thermodynamic calculation on several operation conditions of the furnace, cold-state flow and resistance mensuration, the combustion of the tubular-furnace hearth was changed into swirl and addition of radiate cylinder and oxygen content detection minish 1.25 surplus air to less than 1.15, improving the combustion condition and convection and radiate heat transfer efficacy, resuling in reducing the waste-gas temperature 45℃, decreasing exhaust gas loss, and saving fuel by 6%.
摘要通过对加热几种工况进行热力计算、冷态试验的流场分布及阻力测定和热态试验的膛温度场分布及管壁温度等参数的测定,确定将管式加热膛内直流燃烧改为旋流场燃烧和增加辐射筒,增设烟气含氧量分析,可以将燃烧的过剩空气系数从1.35减小到1.15以下,极好地改善膛内的燃烧状况和对流辐射传热效果,从而降低排烟温度45℃,减少加热排烟损失,节约了煤气量6%以上。收藏指正
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