化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2015年
3期
671-674,688
,共5页
董亚超%王泉海%董亚群%卢啸风%徐杰%宋德才
董亞超%王泉海%董亞群%盧嘯風%徐傑%宋德纔
동아초%왕천해%동아군%로소풍%서걸%송덕재
循环流化床%空隙率%流化风速%物料密度
循環流化床%空隙率%流化風速%物料密度
순배류화상%공극솔%류화풍속%물료밀도
circulating fluidized bed%voidage distribution%fluidizing velocity%material density
利用电厂循环流化床锅炉现有的结构和设备,搭建提升管高度60m、内径400mm的超高循环流化床冷态实验台,重点研究了流化风速和颗粒密度对提升管内轴向和径向空隙率分布的影响。实验结果表明:空隙率分布形式与流化风速和物料密度密切相关,对于一定的床料高度,在底部密相区一直有床料堆积的情况下,随着流化风速的增加,提升管底部密相区空隙率增大,上部稀相区的空隙率减小并且其在径向的分布变得更加不均匀;在一定的流化风速下,密度较小的物料将更多的被带入上部稀相区,上部稀相区的空隙率减小,其在径向分布将变得更加不均匀。
利用電廠循環流化床鍋爐現有的結構和設備,搭建提升管高度60m、內徑400mm的超高循環流化床冷態實驗檯,重點研究瞭流化風速和顆粒密度對提升管內軸嚮和徑嚮空隙率分佈的影響。實驗結果錶明:空隙率分佈形式與流化風速和物料密度密切相關,對于一定的床料高度,在底部密相區一直有床料堆積的情況下,隨著流化風速的增加,提升管底部密相區空隙率增大,上部稀相區的空隙率減小併且其在徑嚮的分佈變得更加不均勻;在一定的流化風速下,密度較小的物料將更多的被帶入上部稀相區,上部稀相區的空隙率減小,其在徑嚮分佈將變得更加不均勻。
이용전엄순배류화상과로현유적결구화설비,탑건제승관고도60m、내경400mm적초고순배류화상랭태실험태,중점연구료류화풍속화과립밀도대제승관내축향화경향공극솔분포적영향。실험결과표명:공극솔분포형식여류화풍속화물료밀도밀절상관,대우일정적상료고도,재저부밀상구일직유상료퇴적적정황하,수착류화풍속적증가,제승관저부밀상구공극솔증대,상부희상구적공극솔감소병차기재경향적분포변득경가불균균;재일정적류화풍속하,밀도교소적물료장경다적피대입상부희상구,상부희상구적공극솔감소,기재경향분포장변득경가불균균。
Using the existing facilities of a circulating fluidized bed(CFB) utility boiler,a cold CFB test rig with a riser of 60m in height and 400mm in internal diameter was built in this research. The study focused on the impacts of the fluidizing velocity and material density on the axial and radial voidage distributions of bed materials inside the riser. The results showed that the voidage distribution was closely correlated with fluidizing velocity and material density. For a given initial height of bed materials,when the bed materials of lower dense phase was not empty,voidage in the lower dense phase zone increased with the increase in fluidizing velocity and voidage in the upper dilute phase zone decreased. Furthermore,the radial gradient of voidage in the upper dilute phase zone also increased. Under a certain fluidizing velocities,more materials with lower densities were brought into the upper dilute phase zone,resulting in increasing radial gradient of voidage in the upper dilute phase zone.