裂解炉

  • 网络furnace;ethylene furnace;Pyrolyzer
裂解炉裂解炉
  1. 从介绍基础控制环境入手,着重探讨了以DCS为核心的裂解炉、压缩机复杂控制系统在乙烯装置的应用情况。

    The article introduces the application of complex control system in furnace and compressor of the ethylene plant which DCS is the core .

  2. 乙烯裂解炉设计中防泄漏方法的研究

    Research on method of leakage prevention for ethylene furnace design

  3. 二氯乙烷裂解炉C4燃料气掺混炼油厂焦化干气可行性分析

    Feasibility of Refinery Coking Dry Gas Blending into C_4 Fuel Gas in Ethylene Dichloride Pyrolyzer

  4. BP神经网络在乙烯裂解炉预测分析中的应用研究

    Applied study of BP neural network in predictive analysis of ethylene pyrolysis furnace

  5. HP乙烯裂解炉管弯头破裂原因的分析

    Research of Elbow Bursting of HP Ethylene Cracking Tube

  6. 对实验室固体渗碳(P管)和裂解炉运行渗碳(S管)的乙烯裂解管进行了研究。

    The ethylene cracking tubes pack-carburized in a laboratory ( P tube ) and carburized during servicing in a cracking furnace ( S tube ) are studied .

  7. 基于改进PSO算法和集成神经网络的裂解炉在线优化

    Online Optimization of Cracking Furnace Based on Advanced PSO Algorithm and Neural Network Ensembles

  8. CFD技术在乙烯裂解炉燃烧器研发过程中的应用

    Applications of Computational Fluid Dynamics Technique in the Development of the Burners of Ethene Cracking Furnaces

  9. 加氢裂化尾油在SRT-Ⅳ(HC)型裂解炉上裂解建模及应用

    Modeling and application for HVGO pyrolysis in SRT-IV ( HC ) cracking furnace

  10. 利用失效分析的方法,分析了2号乙烯柴油裂解炉炉管开裂的原因,结果表明:炉管开裂的原因是由于管材成分中Nb含量偏低、易引起渗碳,使碳化物沿晶界大量析出;

    The causes of cracking of No. 2 ethylene cracker tubes are analyzed by failure analysis method .

  11. 在此基础上提出可供石化行业乙烯裂解炉和FCC装置选择的脱氮技术。

    Several optional NOx reduction techniques for ethylene cracking furnace and FCCU have been brought forward based on this .

  12. 设计新型强化传热构件,并利用先进的CFD技术模拟优化设计过程是目前乙烯裂解炉管强化传热研究的主要方向。

    The development of newtype internals in ethylene cracking tubes has been and will continue to be the hot topic of heat transfer enhancement .

  13. USC乙烯裂解炉底部燃烧系统的改造

    The reconstruction of bottom combustion system for USC ethene cracking heater

  14. 内容共分两部分:1.国外公司在裂解炉设计及故障诊断中CFD软件的应用简介。

    Hie following issues have been included : 1 . The introduction of CFD application on cracking heater design and troubleshooting in foreign companies .

  15. 乙烯裂解炉HPM挤压管的现场检测及失效原因分析

    Examination in site and Analysis on failure reason of HPM extruded tube for ethylene cracking furnace

  16. 阐述了计算流体力学(CFD)在石油化工领域,特别是在裂解炉技术上的应用。

    The application of Computational Fluid Dynamics ( CFD ) in petrochemical industry especially in the cracking heaters , has been described in the paper .

  17. SRT-Ⅳ型重质油裂解炉基于VAX机的裂解深度优化控制

    Optimization Control for Cracking Severity of SRT - ⅳ Heavy Oil Cracker with VAX Computer

  18. 介绍国产CBL型裂解炉制作与安装程序,同时较全面介绍了裂解炉的工程施工与控制技术指标。

    The article introduces the installation procedure , construction and technical control indexes .

  19. CBL型裂解炉的施工安装

    Construction and installation of CBL type cracking furnace

  20. 从裂解炉装置的失效模式与影响分析(FMEA)入手,明确裂解炉装置各零部件的失效原因及故障影响。

    With the Failure Model and Effect Affect ( FMEA ), the failure reasons and its effects are made sure .

  21. CENTUM在裂解炉控制中的应用

    Application of CENTUM to Control of Cracking Furnaces

  22. 概述HCC工艺开发的背景和工艺特点,并通过与管式裂解炉工艺的比较介绍其工艺的特点及优越性。

    The paper describes the background of HCC process development and its process characteristics , and introduces its process features and advantages by comparing it with the process of tubular cracker .

  23. 应用CFX软件对裂解炉中的关键技术的模拟、分析及计算情况的综述。

    The CFX software application in simulation , computation and results analysis for design and operation of cracking heater .

  24. 研究了综合运用非线性PLS和模糊逻辑的故障检测与诊断方法,并在此基础上,利用大型工业裂解炉现场数据构造了裂解炉传感器集成故障检测系统。

    In this paper , the comprehensive approach utilizing nonlinear PLS and fuzzy inference system is studied to meet the practical requirements for sensor fault detection and diagnosis .

  25. 基于GA-RBF网络的乙烯裂解炉在线操作优化

    Online operation optimization in ethylene cracking furnace based on GA-RBF network

  26. 文中介绍了该裂解炉的工艺特点,及其与以前建成的CBL裂解炉相比的技术改进之处,并介绍了对两台裂解炉进行的工艺技术考核结果。

    The paper describes the process characteristics and technology improvement of the two new furnaces and the results of performance evaluation as well .

  27. 各裂解炉管出口温度(COT)偏差的发散和误差的不确定,将对裂解炉操作和乙烯收率带来很大的影响。

    The scattered coil - outlet - temperature ( COT ) and the unfixed temperature errors would influence severely the operation of cracking furnace and the ethylene yield .

  28. BA-103裂解炉性能测试

    Performance Tests and Analysis of BA-103 Cracking Still

  29. 基于PCA-RBF神经网络的工业裂解炉收率在线预测软测量方法

    A Soft-sensing Approach to On-line Predict the Yields of Industrial Pyrolysis Furnace Based on PCA-RBF Neural Networks

  30. BA-111乙烯裂解炉进料预热段出口管腐蚀原因分析

    Corrosion Analysis of Outlet Pipe of Preheating Stage in Ethylene Cracking Furnace BA-111