燃烧管

  • 网络Combustion tube;burn tube
燃烧管燃烧管
  1. 在只有少量油藏资料的条件下,用以往的现场数据和燃烧管试验结果相结合的方法是一种简捷可靠的工程计算方法,它可为决策部门提供主要开发参数。

    The method based on combination of previous field data and experiment results of combustion tube is a simple and reliable engineering calculation method under the condition of a few reservoir informations available . It will provide main parameters for decision ? making body .

  2. 利用数值模拟技术对室内燃烧管干式燃烧实验进行了拟合,研究了燃烧管内干式燃烧的动态变化特征,并且进行了参数敏感性分析。

    The experimental results of dry combustion in combustion tube was matched by numerical simulation method . The dynamic characteristics of dry combustion in combustion tube and the sensitivity of parameters were analyzed .

  3. 燃烧管内悬浮铝粉燃烧爆炸过程的研究

    Investigations on Combustion and Explosion Process of Suspended Aluminum Particles in a Large Combustion Tube

  4. 化学分析用瓷燃烧管

    Porcelain combustion tubes for chemical analysis

  5. 本文首先综述了国内外对火烧驱的实验研究现状,比较了热分析方法和一维燃烧管实验的优缺点。

    This article firstly summarizes experimental research of fire flooding , the advantages and disadvantages are compared between the thermal analysis and one-dimensional combustion test .

  6. 利用火烧油层燃烧管物理模拟技术,对胜利油区河口油田稠油进行了湿式燃烧实验。

    Incorporating physical simulation on pipe for formation combustion , heavy oil formation of Hekou oilfield , Shengli oil province has undergone wet combustion test .

  7. 在充满甲烷-空气预混气的方形燃烧管内,对火焰穿过回形障碍物的情形进行了实验研究,拍摄到了障碍物附近流场的时序阴影照片。

    Experimental investigations on the propagation process of the flame through a square - hole obstacle were performed in a rectangular - section tube filled with premixed methane - air gas .

  8. 利用自行设计的燃烧管,用电热丝点火方式对不同浓度的甲烷&空气混和气体的燃爆和传播机理进行了研究。

    The combusting and blasting mechanism and transmitting mechanism of the methane-air mixture that is ignited by the electrical thermal wire are studied in this paper by using the combusting tube designed and made by ourselves .

  9. 讨论了CHNS元素分析仪燃烧反应管温度的设置问题。

    The problems about the temperature setting for combustion tube of CHNS elemental analyzer are investigated .

  10. CHNS元素分析仪燃烧反应管温度的设置及破裂原因分析

    Discussion on the temperature setting for combustion tube of CHNS elemental analyzer and analysis of the causes of its breaking

  11. 本文对高炉煤气低温燃烧和管式炉节能减排技术进行了研究。

    The technology of blast furnace gas low temperature combustion and pipe still energy-saving and discharge reduction was studied in the paper .

  12. 在此温度下可获得很好的分析结果,并可降低燃烧反应管的破损率,延长燃烧炉使用寿命。

    This paper recommends to set the temperature at950 ℃ . Under this temperature , better analytical results can be obtained , the ratio of breaking of combustion tube decreased and the life time extended .

  13. 用光学多道分析仪(OMA光学系统)测量了氢氧燃烧驱动激波管中典型状态下正激波后高温空气不同时刻的瞬态光谱。

    Spontaneous emission spectra of behind a normal shock wave in high temperature air were measured in a hydrogen oxygen combustion driven shock tube , in a typical condition .

  14. 圆筒加热炉燃烧区内管壁过热点的定位研究

    Study on Orientation of Combustion Hot Spot for Fired Cylindrical Furnace

  15. 建立了一个考虑燃烧区的管式固体氧化物燃料电池数学模型。

    A model was developed to simulate the operation of a tubular solid oxide fuel cell with combustion zone at the steady and transient operation states .

  16. 此外,由燃烧驱动激波管产生的高温燃气作为引导火焰点燃激波风洞产生的预混与预热的超声速碳氢燃料&空气混合物。

    In addition , a hot , burned gas generated from the shock tube was used as pilot flame for igniting the premixed and preheated supersonic hydrocarbon air mixture generated in the shock tunnel .

  17. 蓄热燃烧技术在铸铁管热处理炉上的应用

    Application of Regenerative Combustion Technology in Cast Iron Pipes Heat-treatment Furnace

  18. 高温空气燃烧U型燃气辐射管及其性能分析

    Analysis on Performance of U-type Gas-fired Radiant-tube Using High Temperature Air Combustion Technology

  19. 电站直热锅炉燃烧系统要求三管流量均匀控制。

    The system of Straight-heating Boiler in Electricity-field must be controlled by three-pipe flux .

  20. 火焰筒轴线与发动机轴线成交角的燃烧室联焰管

    Combustor Flame-Crossover Tube Featuring an Intersecting Angle Formed by the Axes of a Flame Tube and an Engine

  21. 增压流化床燃烧煤水混合物管内输送阻力特性研究

    A Study on the Characteristics of In tube Transmission Resistance of Coal water Mixture Burned in a Supercharged Fluidized Bed Furnace

  22. 模拟研究结果表明,在射流区主要为燃烧反应,在管流区主要为转化反应;

    Main reaction in jet flow zone was combustion of natural gas and main reaction in tubular flow zone was its conversion .

  23. 说明本文所介绍的传热模型在一定程度上反映了沸腾燃烧锅炉内埋管传热过程。

    It may be seemed that the heat transfer model presented in this paper would reflect the heat transfer process of the immersed tube in the fluidized bed combustion boiler .

  24. 对实验结果进行了分析;提出了脉冲燃烧装置在不同热负荷条件下,燃烧室与尾管的匹配关系。

    Based on analysis of the experimental result , the relation between combustion chamber and tailpipe at different range of input rate has been obtained .

  25. 计算结果表明三种燃烧方式,壁面发热与中间燃烧和侧墙燃烧相比下部炉管热强度较大,上部炉管热强度较小,热强度下移。

    The results show that in the three types of combustion , the lower part of tubes have larger heat intensities and the upper tubes have smaller heat intensities on the types of wall combustion .