检索规则说明:AND代表“并且”;OR代表“或者”;NOT代表“不包含”;(注意必须大写,运算符两边需空一格)
检 索 范 例 :范例一: (K=图书馆学 OR K=情报学) AND A=范并思 范例二:J=计算机应用与软件 AND (U=C++ OR U=Basic) NOT M=Visual
作 者:付碧华[1] 王亦飞[1] 林岚[1] 许建良[1] 王俭[2] 罗春桃[2] 王辅臣[1]
机构地区:[1]华东理工大学煤气化教育部重点实验室,上海200237 [2]神华宁夏煤业集团煤化工公司研发中心,宁夏银川750411
出 处:《化工学报》2011年第7期1817-1823,共7页CIESC Journal
基 金:国家重点基础研究发展计划项目(2010CB22700);国家高技术研究发展计划项目(2007BAA08B01)~~
摘 要:采用压差传感器和高清摄像仪对洗涤冷却管出口处射流深度和洗涤冷却室内气液界面波动特性进行了冷模实验研究,研究发现,随着表观气速的增大,射流深度呈指数式增大,由此提出了主流射流深度与洗涤冷却管出口处动量通量的经验式,其最大射流深度可达2.51 cm,同时采用VOF模型和RNGκ-ε湍流模型对其进行了模拟计算,模拟结果与实验结果吻合良好。研究结果还表明,洗涤冷却管出口处液面波动对床层内气液两相环流脉动的影响较为显著。Gas penetration depth at quenching pipe outlet and fluctuation characteristics of gas-liquid interface of scrubbing-cooling chamber were investigated by a differential pressure transducer and a high definition digital video(HDDV).The results showed that the penetration depth increased exponentially with increasing superficial gas velocity.On the basis of the experimental data,an empirical equation of main penetration depth and momentum flux of the quenching pipe outlet was proposed and the estimated maximum depth was 2.51 cm.Meanwhile,the VOF model and RNG κ-εturbulence model were used and the simulated results were in good agreement with experimental data.Moreover,the circulating pulsation of the scrubbing-cooling chamber was significantly affected by liquid surface fluctuation of the quenching pipe outlet.
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在链接到云南高校图书馆文献保障联盟下载...
云南高校图书馆联盟文献共享服务平台 版权所有©
您的IP:216.73.216.229