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Flow and penetration behavior of submerged side-blown gas 被引量:3
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作者 Shuai Zhu Qiuyue Zhao +3 位作者 Xiaolong Li Yan Liu Tianci Li Ting’an Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第6期1067-1077,共11页
To assess the widely used submerged side-blowing in pyrometallurgy,a high-speed camera-digital image processing-statistical approach was used to systematically investigate the effects of the gas flow rate,nozzle diame... To assess the widely used submerged side-blowing in pyrometallurgy,a high-speed camera-digital image processing-statistical approach was used to systematically investigate the effects of the gas flow rate,nozzle diameter,and inclination angle on the space-time distribution and penetration behavior of submerged side-blown gas in an air-water system.The results show that the gas motion gradually changes from a bubbling regime to a steady jetting regime and the formation of a complete jet structure as the flow rate increases.When the flow rate is low,a bubble area is formed by large bubbles in the area above the nozzle.When the flow rate and the nozzle diameter are significant,a bubble area is formed by tiny bubbles in the area above the nozzle.The increased inclination angle requires a more significant flow rate to form a complete jet structure.In the sampling time,the dimensionless horizontal and vertical penetration depths are Gaussian distributed.Decreasing the nozzle diameter and increasing the flow rate or inclination angle will increase the distribution range and discreteness.New correlations for a penetration depth with an error of±20%were obtained through dimensional analysis.The dimensionless horizontal penetration depth of an argon-melt system in a 120 t converter calculated by the correlation proposed by the current study is close to the result calculated by a correlation in the literature and a numerical simulation result in the literature. 展开更多
关键词 submerged side-blowing JET high-speed camera image processing dimensional analysis
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某纪念馆空调末端形式分析
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作者 张萍 《制冷与空调》 2023年第2期68-72,共5页
为呈现扬州某纪念馆建筑本体效果、隐藏空调风口,采用2种空调末端形式:地板嵌入式空调器和风机盘管机组暗藏土建空腔内侧送风。对比分析地板嵌入式空调器与地板送风系统,对冬季幕墙内表面进行防结露计算,对风机盘管机组侧送风系统进行... 为呈现扬州某纪念馆建筑本体效果、隐藏空调风口,采用2种空调末端形式:地板嵌入式空调器和风机盘管机组暗藏土建空腔内侧送风。对比分析地板嵌入式空调器与地板送风系统,对冬季幕墙内表面进行防结露计算,对风机盘管机组侧送风系统进行气流组织模拟计算,结果显示:纪念馆幕墙内表面温度≥11.2℃,大于室内空气露点(4.1℃),没有结露风险;采用侧送风空调形式,人员活动区域夏季室内温度约25℃,冬季约22℃,这2种空调末端形式既能满足人员舒适性需求又能巧妙隐藏空调设备。 展开更多
关键词 空调 纪念馆 气流组织 地板嵌入式空调器 侧送侧回
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