玻璃
玻璃
파리
GLASS
2012年
4期
35-38
,共4页
FLUENT%玻璃熔窑%池底%优化
FLUENT%玻璃鎔窯%池底%優化
FLUENT%파리용요%지저%우화
FLUENT%glass melting furnace%bottom%optimize
采用FLUENT软件求解2座电光源玻璃熔窑熔池玻璃液的三维温度场,数学模拟结果与实际熔池池底侵蚀程度进行了比较。研究表明:不同的窑炉规模和出料口位置对熔池池底的温度会产生较大的影响,温度越高池底侵蚀越大。利用数学模拟法可优化玻璃熔窑结构设计和操作工艺。
採用FLUENT軟件求解2座電光源玻璃鎔窯鎔池玻璃液的三維溫度場,數學模擬結果與實際鎔池池底侵蝕程度進行瞭比較。研究錶明:不同的窯爐規模和齣料口位置對鎔池池底的溫度會產生較大的影響,溫度越高池底侵蝕越大。利用數學模擬法可優化玻璃鎔窯結構設計和操作工藝。
채용FLUENT연건구해2좌전광원파리용요용지파리액적삼유온도장,수학모의결과여실제용지지저침식정도진행료비교。연구표명:불동적요로규모화출료구위치대용지지저적온도회산생교대적영향,온도월고지저침식월대。이용수학모의법가우화파리용요결구설계화조작공예。
he three-dimensional temperature field of melt glass in electric light sources glass furnace was solved with FLUENT software and the mathematical simulation results was compared with the actually degree erosion of the bottom.The result shows that:different furnace sizes and location of discharge port will have a great influence on the temperature of the bottom.The higher temperature of the bottom,the more erosion it makes.Making use of the mathematical simulation method can optimize the glass furnace design and operating processes.