Оп degree of converter waste gases afterburning in top-blown converters
DOI:
https://doi.org/10.31498/2225-6733.30.2015.51693Keywords:
a tuyere, nozzle, supersonic flow, converter waste gases, melt, ejection, combustionAbstract
The reasons and degree of converter waste gases afterburning in slag and gas cavity of the converter during blowing have been studied. The afterburning is connected with reflection of the circumferential part of an oxygen jet on its length from the nozzles output section to the metal melt surface because of ongoing streams of converter waste gases and slag layer. Thus oxygen assimilation degree because of the above mentioned factors decreases by 5-35 of % depending on regime parameters, the blowing devices design, portable properties of supersonic jets in the high-temperature gas cavity of the converter and melt, on the height of the tuyere arrangement above the melt etc. Afterburning is influenced with the gas jet and the liquid melt interaction at upper blowing which is various at different intensity of blowing and the height of the tuyere arrangement, that is laminar, transient or turbulent. It has been shown, that gas and melt interaction is also influenced with the probability of the disturbances from the surrounding atmosphere transfer into the jet. The proper analytical ratios that are necessary in order to be able to define the degree of the converter waste gases afterburning above the metal melt at interaction of reflected streams of an oxidizing agent, the converter waste gas and the metal melt have been shown. It has also been proved that the degree of afterburning decreases with growing intensity of blowing, the velocity of the oxidizing agent in the effective (isobaric) section, with increase of the nozzles diameter and number of nozzles reduction, descent of the tuyere and the distance from the jet root to the melt surface decreaseReferences
Бойченко Б.М. Конвертерне виробництво сталі / Б.М. Бойченко, В.Б. Охотський, П.С. Харлашин. – Дніпропетровськ : РВА «Дніпро-ВАЛ», 2004. – 454 с.
Баптизманский В.И. Тепловая работа кислородных конвертеров / В.И. Баптизманский, Б.М. Бойченко, В.П. Черевко. – М. : Металлургия, 1988. – 174 с.
Бигеев А.М. Металлургия стали / А.М. Бигеев. – М. : Металлургия,1988. – 480 с.
Механизм дожигания в конвертере / М. Хираи и др. // Тэцу то хаганэ. – 1987. – Т. 73, № 9. – С. 1117-1124.
Безчерев А.С. Совершенствование дутьевых устройств кислородных конвертеров на основе исследования процесса дожигания отходящих конвертерных газов : автореф. дис. …канд. техн. наук : 05.16.02 / А.С. Безчерев; Приазов. гос. техн. ун-т. – Мариуполь, 2007. – 24 с.
Баптизманский В.И. Конвертерные процессы производства стали. Теория, технология, конструкция агрегатов / В.И. Баптизманский, М.Я. Меджибожский, В.Б. Охотский. – Киев; Донецк : Вища школа, 1984. – 343 с.
Хзмалян Д.М. Теория горения и топочные устройства / Д.М. Хзмалян, Я.А. Каган. – М. : Энергия, 1976. – 488 с.
Lukhtura F.I. One-dimensional theory of off-design supersonic gas jets / F.I. Lukhtura // Fluid Dynamics. – 1993. – V. 28, № 1. – P. 35-40.
Капустин Е.А. Одномерная теория струй / Е.А. Капустин, Ф.И. Лухтура // Вісник Приазовського державного технічного університету : Зб. наук. праць / ПДТУ. – Маріуполь, 2001. – Вип. 11. – С. 243-249.
Лухтура Ф.И. О критической концентрации углерода в расплаве конвертера / Ф.И. Лухтура // Вісник Приазовського державного технічного університету : Зб. наук. праць / ДВНЗ «ПДТУ». – Маріуполь, 2012. – Вип. 24. – С. 49-56.
Сущенко А.В. Совершенствование дутьевых режимов и устройств кислородных конвертеров на основе исследования процессов в реакционной зоне : автореф. дис. …канд. техн. наук : 05.16.02 / А.В. Сущенко; Приазов. гос. техн. ун-т. – Мариуполь, 2002. – 26 с.
Downloads
How to Cite
Issue
Section
License
The journal «Reporter of the Priazovskyi State Technical University. Section: Technical sciences» is published under the CC BY license (Attribution License).
This license allows for the distribution, editing, modification, and use of the work as a basis for derivative works, even for commercial purposes, provided that proper attribution is given. It is the most flexible of all available licenses and is recommended for maximum dissemination and use of non-restricted materials.
Authors who publish in this journal agree to the following terms:
1. Authors retain the copyright of their work and grant the journal the right of first publication under the terms of the Creative Commons Attribution License (CC BY). This license allows others to freely distribute the published work, provided that proper attribution is given to the original authors and the first publication of the work in this journal is acknowledged.
2. Authors are allowed to enter into separate, additional agreements for non-exclusive distribution of the work in the same form as published in this journal (e.g., depositing it in an institutional repository or including it in a monograph), provided that a reference to the first publication in this journal is maintained.







