摘要
对传统的浸没燃烧技术进行了改进和创新,研制增压浸没燃烧汽化装置.进行了实验系统关键设备高压浸没燃烧器的基础理论设计计算,通过数值模拟高压燃烧对理论设计计算进行辅助设计,结果二者吻合较好,为高压燃烧器在增压浸没燃烧汽化系统的应用以及优化设计奠定了基础,可用于指导工程设计.增压浸没燃烧汽化在浸没燃烧技术原有优点基础上可对高压排气进行二次利用,此形式的热利用装置创意新颖、高效节能、大气排放指标极低或零排放、耗材少、成本低廉,在工业污水处理、油田、化工等行业具有良好的应用前景.
Based on the characteristics of the conventional submerged combustion technology, we do some improvement and innovation, and then develop the pressurized submerged combustion vaporization (PSCV) equipment. Basic theoretical calculations of the higher pressure burner are carried out, which agree well with the results from numerical simulation of the high pressure combustion. It will offer appropriate measures for the application and optimization of the high pressure burner in the PSCV system and guidance on engineering design. Besides the advantages of the traditional submerged combustion technology, the pressurized submerged combustion technology is able to utilize the higher pressure exhaust gas. This innovation could further help the system increase efficiency, reduce emission and lower costs, and it will have brilliant future and be widely used in the industrial waste water treatment, oil field and chemistry industry.
出处
《北京工业大学学报》
CAS
CSCD
北大核心
2012年第6期922-926,共5页
Journal of Beijing University of Technology
基金
国家自然科学基金资助项目(51076004)
关键词
高压燃烧器
浸没燃烧技术
汽化器
higher pressure burner
submerged combustion technology
vaporation