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1.
Numerical Simulation on Cracking Reaction Kinetics GK5 Coil in Cracking Furnace;
裂解炉管内的裂解反应动力学的数值模拟
2.
DEVELOPMENT AND INDUSTRIAL EXAMINATION OF A LOW COKING AND CARBURIZATION RESISTANT COATING FOR ETHYLENE PYROLYSIS FUR-NACES:PARTⅡ
延缓裂解炉管结焦和渗碳的涂层开发与工业考核(二)
3.
Simulation for Influence of Gaseous Back-Mixing on Decoking Process in a Ethane Pyrolysis Furnace
模拟乙烷裂解炉管中流体返混对烧焦过程的影响
4.
DEVELOPMENT AND INDUSTRIAL EXAMINATION OF A LOW COKING AND CARBURIZATION RESISTANT COATING FOR ETHYLENE PYROLYSIS FURNACES:PART I
延缓裂解炉管结焦和渗碳的涂层开发与工业考核(一)
5.
The basic concepts for improving anti-carbonation performance of ethylene cracking furnace lubes by surface modification are proposed based upon the carbonation process of the furnace tubes of elhylene cracker.
针对乙烯裂解炉管的渗碳过程,指出了采用表面改性技术提高乙烯裂解炉管抗渗碳性能的基本思路。
6.
Welding Technology of G-X45NiCrSiNb45-35 Steel Tubes of Ethylene Cracking Furnace
乙烯裂解炉炉管G-X45NiCrSiNb45-35的焊接工艺
7.
Small-scale Ethylene Cracking Furnace Tube Radiation Paragraph Domestic Reform
小乙烯裂解炉辐射段炉管国产化改造
8.
Simulation on the Decoking of Radiation Section Coils of Gas Thermal Cracking Furnace in Yanshan Petro-chemical Co.;
燕化气体裂解炉辐射段炉管烧焦过程模拟
9.
Welding Repair Technology for Life Extension of Ethylene Cracking Furnace Tubes;
乙烯裂解炉炉管延寿的焊接修复技术研究
10.
Improvings and Applications of Two-dimensional Model about Tube Pyrolyzer;
管式裂解炉二维模型的改进及工业应用
11.
Researches and Applications of Calculating Methods about Ethene Tube Pyrolyzer;
乙烯管式裂解炉计算方法的研究及应用
12.
Analysis on Cracking Reason of 1Cr18Ni9Ti Steel Furnace Tube
1Cr18Ni9Ti钢炉管开裂原因分析
13.
Comparison of Two Design Methods for Design of TLE
乙烯裂解炉急冷锅炉设计方法的对比
14.
A reaction heat transfer model of the radiation chamber in an industrial scale cracking furnace has been proposed for production of vinyl chloride monomer (VCM) from 1,2 dichloroethane (EDC).
建立了管式裂解炉的反应传热模型 ,以描述二氯乙烷裂解制氯乙烯单体的工业过程。
15.
SIMULATION OF TWO METHODS FOR REGULATING THE DILUTION RATIO IN THE TUBULAR CRACKING FURNACE WITH THE ORTHOGONAL DESIGN METHOD
管式裂解炉2种稀释比调节方法的正交数值模拟
16.
Modeling and Simulation for HVGO Pyrolysis Process in SRT-Ⅳ(HC) Cracking Furnace;
SRT-Ⅳ(HC)型裂解炉中HVGO裂解过程的模型化与模拟
17.
The EDC cracking reaction rate is higher in the wall zone and reaches a maximum at 0.3 of dimensionless length of reactor coil.
表明确定最优的炉管管径时必须考虑提高裂解速率与降低结焦速率之间的平衡。
18.
Several other sand crackers have been built since then.
以后又建了几个别的砂子裂解炉。