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1.
方截面循环悬浮床内构件对气固混合行为的影响   总被引:1,自引:1,他引:0  
在冷态的方截面烟气脱硫循环悬浮床实验装置中,研究了上升床中部内构件不同安装方式对床内气固两相流动结构的影响和气固混合行为的表现。通过实验得到了内构件在几种安装方式的床内轴向颗粒浓度分布和径向上颗粒浓度分布,发现内构件增强了颗粒内循环。大小构件组合并上下交叉安装的方式对提高床密度,改善轴向和径向浓度均匀性发挥了较好作用。这对提高气固混和效率非常关键。  相似文献   

2.
喷嘴进料对提升管进料段内颗粒浓度分布的影响   总被引:2,自引:0,他引:2  
在提升管冷模实验装置上考察了喷嘴进料对颗粒浓度径向分布的影响规律. 结果表明,提升管进料段内存在3种形式的颗粒浓度径向分布,在距喷嘴较近的轴向区域,颗粒浓度沿径向呈明显的W形分布,喷嘴进料对颗粒流动的影响很强;在距喷嘴较远的轴向位置,颗粒浓度沿径向呈环-核分布,喷嘴进料对颗粒流动的影响很弱;在二者之间,颗粒浓度沿径向呈弱W分布,喷嘴进料对颗粒流动具有一定影响. 随着喷嘴气速的增加或预提升气速的减小,颗粒浓度逐渐由W形分布转变为环-核分布,喷嘴进料对颗粒流动的影响逐渐减弱. 采用喷嘴射流动量与预提升来流动量比Mj/Mr考察了操作参数及装置结构尺寸对提升管进料段内颗粒浓度径向分布的综合影响. 在实验范围内,动量比对进料段内颗粒浓度径向分布及颗粒流动行为具有明显的影响规律,随着动量比的增加,颗粒浓度逐渐由W形分布转变为环-核分布,操作参数及装置结构尺寸对颗粒流动的影响逐渐减小. 在动量比小于4.21时,操作参数及装置结构尺寸对颗粒流动的影响在H=0.675~1.075 m间的轴向位置基本结束;在动量比增大为4.21时,操作参数及装置结构尺寸对颗粒流动的影响在H=0.375~0.675 m间的轴向位置便已基本结束.  相似文献   

3.
逆向气体射流对下行床颗粒混合的影响   总被引:2,自引:0,他引:2  
下行床入口结构的研究一直被人们所重视。今在内径为0.192m的下行床中颗粒达到均匀分布的部位,沿床四周均布了三个45度方向逆流场气体射流入口,在此处设立气体入口可以使颗粒分散与气固快速接触不再同时进行。采用磷光颗粒示踪技术对下行床有逆流场射流气体存在时颗粒的轴径向混合行为进行了研究。这种逆流场射流气体对下行床颗粒的轴向混合行为无明显影响,在各操作条件下下行床内颗粒均能以接近平推流的方式运动;但该射流气体可以大大加强颗粒的径向混合,有利于气固接触,在下行床颗粒径向混合越差的操作条件下,射流气体对颗粒径向混合的影响效果越明显,下行床的这种入口结构具有良好的应用前景。  相似文献   

4.
赵永志  程易  丁宇龙  金涌 《化工学报》2007,58(6):1396-1403
采用计算流体力学和离散单元模型(CFD-DEM)耦合一种简单的气固催化反应模型对具有不同入口结构的二维下行床内的气粒流动和混合行为进行全床数值模拟。模拟得到了不同入口结构下行床内的多尺度气固运动状态、全床的固含、速度及反应生成物浓度分布,以及气体和颗粒在下行床内的停留时间分布,发现入口结构对反应器内的流动、混合和气固接触效率起着关键性的作用,入口气体和颗粒的不均匀分布将导致下行床内气体停留时间的宽分布以及气固接触效果的恶劣。  相似文献   

5.
通过大型冷模实验,考察了油剂逆流接触提升管进料段内压力脉动强度的轴、径向分布,并结合射流气浓度分布、预提升气浓度分布和颗粒浓度分布分析了气固间作用特征及其对流动的影响. 结果表明,根据喷嘴射流、预提升气及颗粒相对压力脉动的贡献,可将新型提升管进料段沿轴向由下而上分为喷嘴进气上游影响区(H=?0.375~?0.1 m)、喷嘴进气控制区(H=?0.1~0.375 m)及喷嘴进气下游影响区(H=0.375~0.675 m). 进料段内压力脉动相对标准偏差径向分布的模拟值与实验值吻合较好.  相似文献   

6.
基于强湍流分散的下行床入口结构   总被引:2,自引:2,他引:0       下载免费PDF全文
钱震  张明辉  余皓  魏飞  金涌 《化工学报》2004,55(8):1249-1255
基于对现有下行式循环流化床(下行床)气固混合入口的总结,提出下行床入口结构设计的关键原则.依据该原则设计了一种由对撞气体射流引入强湍流场来实现气固快速混合的入口结构.在内径418mm、高18m的工业示范规模下行床冷态实验平台上,采用双光路光纤密度探头、激光多普勒测速仪、微压差计和氢气稳态示踪技术对该入口结构及其后的下行床主体的气固流动、混合行为进行了考察.结果表明,与以往基于单管或多管射流的入口相比,该入口结构无需分布器就可以实现大质量流率条件下气固两相的快速均匀分布.  相似文献   

7.
白丁荣  金涌 《化学工程》1991,19(5):5-12,21
本文在φ140mm的气固并流下行快速流化床中,研究了颗粒浓度及颗粒速度的径向分布随操作气速、颗粒循环速率以及床层轴向位置的变化规律。并探讨了颗粒质量通量的径向分布及颗粒流动的均匀性,表明在相同操作条件下,下行快速流化床中气固流动远比上行快速流化床均匀。  相似文献   

8.
循环悬浮床内固相浓度很低,改善气固混合对增强接触反应、提高脱硫效率起着关键作用.今在过去实验的基础上,利用方形截面床内构件简单易实现的优点,在床中部安装对称构件,考察对称内构件对两相流动行为的影响.分别从方截面正向、斜向上的颗粒浓度分布,讨论了内构件对颗粒轴向返混、径向掺混及截面浓度的作用,分析了构件尺寸对实验结果的影响.较大尺寸的内构件在适当的表观气速时能够对改善流场中气固混合及提高截面浓度起到非常积极的作用.  相似文献   

9.
内置钝体对快速流化床中颗粒浓度分布的影响   总被引:6,自引:0,他引:6  
本文在内径140mm的快速流化床中,考察了内置钝体对床内轴向压力分布和径向颗粒浓度分布的影响。实验结果表明,内置钝体构件对于快速流化床中的压力和浓度的分布影响显著,而且大大增强了气固两相的径向混合。  相似文献   

10.
提升管-下行床耦合反应器内颗粒混合行为   总被引:7,自引:0,他引:7       下载免费PDF全文
刘会娥  杨艳辉  魏飞  金涌 《化工学报》2002,53(3):302-306
引 言循环流化床中气固两相的流动有两种不同的方式 :提升管中为气固并流上行的逆重力场运动 ,下行床中为气固并流下行的顺重力场运动 .其差异表现为提升管内颗粒浓度、速度以及气体速度在径向上严重的不均匀 ,颗粒浓度概率密度分布以及速度的瞬时信号都表明了颗粒团 -空穴两相结构的存在[1] ,一些研究[2 ,3] 还发现提升管中颗粒的停留时间分布 (RTD)曲线存在较大的拖尾甚至出现双峰 ,研究者认为提升管内存在弥散颗粒和颗粒团两种不同的混合机理 ;下行床则比提升管大大改善 ,气固速度、颗粒浓度沿径向分布要均匀得多 ,颗粒的RTD曲线…  相似文献   

11.
循环流化床中颗粒团聚物性质的PDPA测量   总被引:4,自引:3,他引:1       下载免费PDF全文
提出了一种利用相位多普勒粒子分析仪(PDPA)来测量气固循环流化床中颗粒团聚物性质的方法,并运用此方法初步考察了操作条件对循环流化床稀相区中颗粒团聚物性质的影响.在本实验操作条件下,颗粒团聚物的时间分率、频率、内部空隙率以及轴向速度等性质都存在轴径向的不均匀分布,具有较明显的环核特征;固体循环速率对颗粒团聚物性质径向分布影响不大,表观气速的变化可引起其轴向分布规律发生显著改变,但其径向的环核特性仍然存在.  相似文献   

12.
内构件对于提升管中颗粒混合行为的影响   总被引:5,自引:3,他引:5  
对加设了钝体式内构件的提升管内颗粒的轴径向混合为进行了研究。研究结果表明,内构件的存在并不能明显减少提升管内颗粒的轴向返混,这与提升管内稳定的微观两相结构密切相关,但颗粒的径向混合能力却可大大加强,而且在越高的气速和固含条件下,这种加强作用越明显,其原因是内构件的存在加强了边壁区颗粒的脉动,有利于破坏提升管边壁区的颗粒浓环,促进颗粒的径向交换与混合。  相似文献   

13.
Radial profiles of solid concentration and velocity for concurrent downward gas-solid suspension in a140mm inside diameter fast fluidized bed were investigated.The influence of gas velocity,solid circulating rateand axial position on radial profiles of solid concentration and particle velocity has been examined.It hasbeen found that an annular region of high solid concentration exists at r/R=0.94.At both the center and wallregion,the solid concentration and the particle velocities are relatively low.The shape of radial solid con-centration profile curves is mainly dependent on the cross-section averaged voidage,and the shape of radialparticle velocity profile is mainly affected by the gas velocity and cross-section averaged voidage.Based on the radial profiles of solid concentration and particle velocity,the solid mass flux profile and thenonuniformity of solids flow are discussed in this paper.It is shown that solids flow in CDFFB is much moreuniform than that in UFFB.  相似文献   

14.
Axial and radial profiles of gas and solids holdups have been studied in agas-liquid-solid circulating fluidized bed at 140mm i.d..Experimental results indicate that the axialand radial profiles of gas and solids holdups are more uniform than those in a conventionalfluidized bed.Axial and radial liquid dispersion coefficients in the gas-liquid-solid circulating fluidizedbed are investigated for the first time.It is found that axial and radial liquid dispersioncoefficients increases with increaes in gas velocity and solids holdup.The liquid velocity has littleinfluence on the axial liquid dispersion coefficient,but would adversely affect the redial liquiddispersion coefficient.It can be concluded that the gas-liquid-solid circulating fluidized bed hasadvantages such as better interphase contact and lower liquid dispersion along the axial directionover the expanded bed.  相似文献   

15.
In order to improve non-uniform radial and axial flow structure of a circulating fluidized bed, the influence of ring-type internals on the axial pressure distribution and gas—solids flow structure in a riser of 7.6 cm in diameter and 3 m in height was investigated experimentally. Four different opening areas, 70%, 80%, 90% and 95%, were used and the superficial gas velocity and solids circulation rate were in the ranges of 5 to 10 m/s and 20 to 233 kg/m2·s, respectively. With the presence of internals, the axial pressure gradient distribution shows the formation of a zigzag type profile instead of the regular exponential or S-shape profile and the bottom acceleration region is shortened. The opening ratio of the rings plays an important role in affecting the flow structure. The optimal opening ratio is tightly related to the operating conditions. In the circulation fluidized bed used in this study, 90% open area was found to be most suitable for obtaining a more uniform gas—solids flow structure.  相似文献   

16.
In order to investigate the influence of the entrance effect on the spatial distribution of phases, the experiments on gas-liquid two-phase slug flow in a vertical pipe of 0.03m ID were carried out by using optical probes and an EKTAPRO 1000 high speed motion analyzer. It demonstrates that the radial profile of slug flow void fraction is parabolic. Influenced by the falling liquid film, the radial profile curve of liquid slug void fraction in the wake region is also parabolic. Since fully turbulent velocity distribution is built up in the developed region,the void fraction profile in this region is the saddle type. At given superficial liquid velocity, the liquid slug void fraction increases with gas velocity. The radial profiles of liquid slug void fraction at different axial locations are all saddle curves, but void fraction is obviously high around the centerline in the entrance region. The nearer the measuring station is from the entrance, the farther the peak location is away from the wall.  相似文献   

17.
The influence of distributor structure on solids distribution is studied in two riser circulating fluidized bed reactors with different distributor structures but similar diameters. Optic fibre probes were used for the measurement of local solids distribution. The axial and radial distribution of solids holdup in the riser with a multi‐tube distributor is more uniform than that with a multi‐orifice distributor. The radial profiles of particle velocity in the riser with the multi‐tube distributor are also more uniform than that with the multi‐orifice distributor. In the riser with the multi‐tube distributor, both gas and particles are distributed more uniformly across the section, so that the flow acceleration is much more uniform and faster. The flow development is much faster and the fully developed region is reached early for the riser with the multi‐tube distributor. The distributor design is an important factor for the design of circulating fluidized bed reactor.  相似文献   

18.
在一套大型冷模实验装置上,采用光纤测量系统考察了带中心管的两股催化剂颗粒混合预提升结构内固含率和颗粒速度的分布,以径向不均匀指数对固含率和颗粒速度径向分布进行定量描述,并与不同的预提升结构进行对比. 结果表明,带中心管的预提升结构沿轴向可分为底部、中心管和提升管区,各区固含率和颗粒速度径向分布均匀程度为提升管区>底部区>中心管区;提升管区内1.3~2.3 m间存在一固含率和颗粒速度分布均匀截面;与无中心管的预提升结构和传统预提升结构相比,本实验结构固含率径向分布更均匀,有利于油剂接触;确定了截面平均固含率的影响参数为终端固含率es', Froude数Fr和轴向高度/提升管直径h/Dr;由实验数据回归出预提升结构内截面平均固含率轴向分布的经验模型,计算值与实验值吻合较好.  相似文献   

19.
The radial solids fraction profiles in the inlet region of a high density circulating fluidized bed (HDCFB) are studied by a dual-beam optic density sensor. Three kinds of inlet structures are employed to examine the axial developing process of the profiles. The acceleration effect of solids is analyzed by comparing the cross-sectional average solids fraction obtained by the density sensor and differential pressure method. The results show that the radial solids fraction profile is largely influenced by the inlet structure. The length for the inlet effect region is no more than 1.5 m above the air injection.  相似文献   

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