combustion furnace

英 [kəmˈbʌstʃən ˈfɜːnɪs] 美 [kəmˈbʌstʃən ˈfɜːrnɪs]

网络  焚烧炉

化学



双语例句

  1. Temperature Fuzzy Control System for Vertical Coal Powder Combustion Furnace
    竖式煤粉燃烧炉的温度模糊控制系统
  2. The feeding opening of the straw heating combustion furnace is arranged on the top of the furnace body, thereby enabling burning of the straws to be more sufficient and reducing discharge pollution.
    本实用新型所述的秸秆采暖燃烧炉将加料口开在炉体顶部,使秸秆燃烧更充分,减少排放污染。
  3. The fluidized mix combustion furnace for "Three wastes" of gasification might make the total solid wastes caused in the gasification process to be recovered and reused.
    前言:造气三废流化混燃炉可将造气过程中产生的固体废弃物全部处理回收利用。
  4. By disposing the heating water pipe inside the furnace body, the straw heating combustion furnace has dual functions of cooking and heating.
    通过在炉体内设置采热水管,使该秸秆采暖燃烧炉具备了做饭、采暖的双重功能。
  5. Through engineering practice, experiences are summed up of the design of the combustion furnace, the minimum use of purge gas, safety in operation, and load adjustment, opening up a new technical route for the recovery of blow gas.
    通过工程实践,总结了对燃烧炉设计、弛放气最小用量、安全运行、调节负荷等方面经验,为回收吹风气提供了新的技术路线。
  6. Numerical Investigation of Turbulent Mixing in a High Temperature Air Combustion Furnace
    高温空气燃烧炉内湍流混合特性的数值研究
  7. Thirdly research the characteristic of ash component distribution in combustion furnace and laboratory in order to open out alkali metals migration rule.
    然后对不同负荷下废液水煤浆沿火炬行程灰成分的分布特性进行了实验研究,揭示碱金属的迁移规律。
  8. Behaviour of Minerals in Coal in Combustion Furnace
    燃烧炉内煤中矿物质行为研究
  9. By utilization of the existing boiler a horizontal combustion furnace and a burner that match have been designed for the recovery of the latent heat in the blow gas.
    利用原有锅炉,设计与之匹配的卧式燃烧炉和燃烧器回收造气吹风气潜热。
  10. Experimental Research About Effect of Shrinked-middle Wind of Pulverized Coal Combustion Furnace on the Emission of NO_x
    燃煤锅炉缩腰配风对NOx排放影响的试验研究
  11. Calculation Discussion of the Acid Mist Content at the Exit of Sulphur Combustion Furnace
    硫磺制酸焚硫炉出口气体中酸雾含量的计算与讨论
  12. The reactions in combustion furnace are very complicated in Claus sulfur recovery process, but it is important for design and production to research these reactions.
    克劳斯法制硫过程燃烧炉内的化学反应十分复杂、但研究这些反应对设计和生产有重要意义。
  13. It is of the guiding significance to study its formation mechanism for improving desulfuration effect of fixed bed and suspend combustion furnace.
    研究该物相的生成机理对提高固定床及煤粉炉内煤燃烧过程的脱硫效果具有指导意义。
  14. The three-dimensional numerical simulation of the non-premixed combustion turbulent mixing processing in high temperature combustion furnace have been performed with authors developed computer program of flow, combustion, heat transfer and NO-x turbulent formation.
    应用自行研发的三维流动、燃烧、传热和污染物NOx湍流生成的数值模拟程序,对高温空气燃烧实验模型炉进行了湍流扩散燃烧混合特性的数值模拟。
  15. Process features of super Claus unit were introduced, design idea was described for control system for both combustion furnace and oxidation air, comparison of this unit was made with ordinal Claus process.
    介绍了超级克劳斯装置的工艺特点,阐述了燃烧炉控制系统和氧化空气控制系统的设计意图,将该装置与常规克劳斯工艺进行了比较。
  16. Based on the theory of oil drop and atomizing oil combustion, in association with its all kinds of characteristics, the experiments carried out the miniature combustion furnace indicated that it had excellent combustion performance and low pollution emission.
    在油滴燃烧和油雾燃烧的理论基础上,在实验室自制的小型燃烧炉上进行了副产品油的燃烧试验,试验结果表明该副产品油具有良好的燃烧性能和低污染排放的性能。
  17. When the best combustion furnace temperature is 600 ℃, the organic carbon is determined directly. The organic carbon of the total suspended particulate matter in Qiqihar is monitored continuously.
    该方法是在氧化炉最佳温度为600℃时,一步测定出样品中有机碳的含量,并成功地对齐齐哈尔市大气总悬浮颗粒中的有机碳进行了连续的监测。
  18. The temperature control of combustion furnace in Claus process
    克劳斯法制硫工艺中燃烧反应炉的温度调控
  19. Projected Application and Modelling about Combustion Furnace System ( CFS) in a Boiler
    炉膛(CFS系统)燃烧过程的数值模拟及工程应用
  20. The Combustion Furnace Pressure Drop of a Circulating Fluidized Bed and Axial Solid Concentration
    循环流化床燃烧炉膛压降与轴向固体浓度
  21. With the CaO assuming two kinds of typical particle diameter explored and discussed is the effect on the desulfurization rate of such factors as combustion furnace temperature and Ca/ S, etc.
    就两种典型粒径下的CaO探讨了燃烧炉温度、Ca/S等因素对脱硫率的影响。
  22. Application of double preheating technique with auxiliary combustion furnace on No.4 BF of TISCO
    带附加燃烧炉的双预热技术在太钢4号高炉的应用
  23. Automatic Control System of Flue Gas Temperature in Combustion Furnace
    烟气炉烟气温度自动控制系统
  24. Numerical Simulation of Furnace-Flow Properties Effected by Fuel Injection in High Temperature Air Combustion Furnace
    燃气喷射对高温空气燃烧室内流动影响的数值研究
  25. The acid mist content at the exit of sulphur combustion furnace ( or at the entrance of converter) in the sulphuric acid process using sulphur as raw material and the influent factors are calculated and discussed in the article.
    对硫磺制酸系统焚硫炉出口(或转化器进口)气体中的酸雾含量及其影响因素进行了计算与讨论。
  26. The implementation of the pulse combustion furnace temperature discretized optimization model cleans up the influence of reversing control to combustion process, while ensuring a uniform temperature field under different conditions.
    通过脉冲式燃烧炉温控制离散化优化模型的实施,解决了换向控制对燃烧过程的影响,同时保证了不同工况下温度场均布。
  27. Resistance wire heating with automatic control is used to simulate the actual products of gasification combustion furnace heating.
    采用自动控制电功率的电阻丝外加热来模拟实际工程中燃烧产物对炉膛的加热气化。
  28. The model include model for fluid dynamics in fluidized bed, model for coal pyrolysis and gasification, model for cyclone, model for partical attrition and elutriation, model for heat transfer in CFB, mass balance and energy balance about combustion furnace and gasifier.
    模型主要考虑了流化床流体动力学特性模型、煤热解气化模型、分离器模型、煤焦的磨损扬析模型、流化床换热模型以及气化炉、燃烧炉之间的物质平衡和能量平衡关系。
  29. Based on the characteristics of pulse combustion and actual situation that air gas flow can not be measured accurately, pulse combustion furnace temperature discrete optimization model and air gas pressure control model.
    基于脉冲式燃烧的特点和空煤气流量无法准确测得的现实情况给出了脉冲燃烧炉温控制离散化优化模型和空煤压力控制模型。
  30. The developed combustion furnace and sulfur condenser unit models were used as the user models of Aspen Plus, and were compiled and linked to Aspen Plus for use.
    将建立的燃烧炉和硫冷凝器单元模型作为aspenplus软件的用户模型,编译链接到aspenplus中以供使用。