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1.
垂直管内三相流化床沸腾传热特性   总被引:14,自引:1,他引:14  
研究了三相流化床沸腾传热的特性和影响传热系数的诸因素。在传热过程中,由于固体粒子的存在,强化了传热。以玻璃球粒子为固相的三相流化床沸腾传热系数,是相同条件下汽液两相流沸腾传热的二倍。以铜粒子为固相的三相流化床沸腾传热系数,是相同条件下汽液两相流沸腾传热系数的3倍。  相似文献   

2.
汽液固三相流化床沸腾传热的研究   总被引:15,自引:2,他引:13  
李修伦  刘绍从 《化工学报》1993,44(2):224-229
对垂直管内汽液固三相流化床沸腾传热特性进行了实验研究和理论分析,建立了沸腾传热的计算方法.实验结果表明,由于固体粒子的存在,强化了沸腾传热.传热系数比汽液两相流提高2倍左右.沸腾过程的稳定性明显提高.  相似文献   

3.
通过加入不同种类和体积分率的惰性粒子,在垂直管中进行了水的流动沸腾传热实验,研究了三相流沸腾传热特性。实验中预先对水加热,采用了沸点进料。实验发现,传热膜系数随热通量、液体流量的增加及粒子体积分率的增大而增加。对于不同粒子,这种变化趋势比较一致,但不同粒子对沸腾传热的强化效果不同。实验结果表明:由于固体粒子的存在,强化了沸腾传热,三相流沸腾传热系数是相同条件下汽液二相流沸腾传热系数的1.3—1.7倍。  相似文献   

4.
三相循环流化床中沸腾传热特性   总被引:20,自引:3,他引:17       下载免费PDF全文
提出了一种新型蒸发沸腾传热方式,即汽液固三相循环流化床沸腾传热。实验表明:该传热方式具有强化传热和防、除垢效果;其传热系数比汽液两相流沸腾传热膜系数高1.5~2.0倍,并能长期保持传热壁面的洁净。实验中研究了不同种类的固体粒子(玻璃球、陶瓷球、钛粒和钢球)、粒子体积分率、液相流速以及加热蒸汽压力等因素对循环流化床沸腾传热的影响。  相似文献   

5.
加入惰性固体粒子的二元物系的流动沸腾传热特性   总被引:2,自引:0,他引:2       下载免费PDF全文
王春雨  李修伦 《化工学报》2000,21(5):685-689
引 言流动沸腾传热广泛存在于石油、化工、轻工、动力及能源等各个领域 ,但三相流动沸腾传热的研究极少 .李修伦等[1]在流动沸腾系统中加入惰性固体粒子 ,进行了汽 -液 -固三相流沸腾传热的初步研究 .李修伦、闻建平[2 ,3]进一步将三相流和沸腾换热相结合 ,较好地解决了沸腾传热强化和防垢、除垢问题 .李修伦、张利斌等[4 ]又采用循环流化床技术 ,结合粒子在沸腾系统中的强化特性 ,开发了汽 -液 -固三相循环流化床蒸发器 ,它具有良好的强化传热和防、除垢性能 .上述研究均属于单组分三相流动沸腾传热 ,而关于二元物系三相流动沸腾传热的研…  相似文献   

6.
三相循环流化床蒸发器强化传热的研究   总被引:1,自引:0,他引:1  
采用汽-液-固三相循环流化床新型蒸发器蒸发麦草浆黑液,讨论了热通量、流速和粒子体积分数对三相流沸腾传热系数的影响。试验表明,三相流沸腾传热系数随热通量、黑液流速和粒子体积分数的增加而增大。且对黑液这种高粘度流体使用该蒸发器,其三相流沸腾传热系数比汽液两相流沸腾传热系数提高约20%~30%。  相似文献   

7.
评述了三相流化床蒸发器流动性能、惰性粒子运动对液体流动及传热性能的影响,建立了加入惰性粒子形成的汽-液-固三相流流动沸腾传热系数准数经验关联式。  相似文献   

8.
本文将固体颗粒引入垂直列管热虹吸再沸器中,形成内部自然循环固相强化沸腾传热,对其传热特性进行了实验研究。重点考察了固相种类、直径、加入量对有机物系沸腾传热的强化效果。试验结果表明,固相强化后,传热系数较相同条件下汽液两相沸腾传热提高20%以上。  相似文献   

9.
本文研究了内加热式螺旋流流动沸腾传热的传热性能与临界热通量问题,提出了有旁流和无旁流时沸腾传热系数的计算方法,并进行了验证。  相似文献   

10.
汽液固三相循环流化床蒸发器强化传热和防垢研究   总被引:10,自引:2,他引:8  
本文在已开发的汽液固三相循环流化床蒸发器装置上进行了条件试验研究。试验表明,这种新型的蒸发器具有明显的强化传热和防垢效果,其传热系数比汽液两相流沸腾传热膜系数提高1.5倍 ̄2.0倍,并能有效防止污垢的产生。文中对强化传热和防垢的机理进行了探讨。  相似文献   

11.
汽液固三相流动沸腾传热计算与实验研究   总被引:3,自引:1,他引:3       下载免费PDF全文
对汽液固三相循环流化床中流动沸腾传热进行了理论分析和实验研究 ,在此基础上结合渐进模型及表面更新机理建立了汽液固三相流动沸腾传热模型 ,模型计算值和实验数据吻合较好 ,最大偏差在 18%以内  相似文献   

12.
In order to enhance heat transfer and solve the fouling problems in boiling processes, a boiling system was designed by adding solid particles to the boiling liquid. In this paper, both theoretical analyses and experimental studies on the flow boiling heat transfer in a vapor-liquid-solid three-phase circulating fluidized bed evaporator were carried out. Based on the analysis of the heat transfer characters of this three-phase flow boiling, a mathematical model for predicting the flow boiling heat transfer coefficients of the vapor-liquid-solid three-phase circulating fluidized bed evaporator was developed. The experiments show that, in the presence of solid particles the flow boiling heat transfer is enhanced and is about 2 times that of the vapor-liquid two-phase one. The predicted results of the flow boiling heat transfer coefficients agreed well with the experimental data.  相似文献   

13.
Experimental studies on vapor-liquid-solid three-phase flow boiling heat transfer and overall pressure drop of ethanol-water binary mixtures in a vertical tube with solid particles added were carried out. Based on the analysis of the heat transfer characteristics of this three-phase flow boiling, a mathematical model for predicting the three-phase flow boiling heat transfer coefficients of ethanol-water binary mixtures was developed. The results show that with the presence of inert solid particles in binary mixtures, flow boiling heat transfer is enhanced and is about twice that of vapor-liquid two-phase heat transfer. The predicted results of the flow boiling heat transfer coefficients of ethanol-water binary mixtures agreed well with the experimental data.  相似文献   

14.
FLOW BOILING HEAT TRANSFER WITH FLUIDIZED SOLID PARTICLES   总被引:4,自引:0,他引:4       下载免费PDF全文
In order to solve the fouling problems in boiling processes,a boiling system was designedby adding solid particles to the boiling liquid In this paper.both theoretical analyses andexperimental studies on the boiling heat transfer in such a three-phase flow boiling were carried out.Based on the analysis of heat transfer characters of this three-phase flow boiling,a mathematical mod-el for the heat transfer coefficient of flow boiling was developed.The experiments show that,in thepresence of particles the boiling heat transfer is enhanced and is about 2 times that of the vaporliquid two phase one with better flow stability.The fluidized particles rub the heat transfer wall toprevent and to clean the fouling.  相似文献   

15.
In flow boiling apparatus, fouling is frequently a problem. Mechanical methods to mitigate fouling include the impact of solids on the deposit to remove it. Solid particles fluidised by the two-phase boiling mixture may accomplish sufficient deposit removal to keep boiling surfaces clean. This results in a self-cleaning fluidised bed boiling heat exchanger. The particles additionally enhance the heat transfer. In this paper, a comprehensive investigation of three-phase fluidised flow boiling in a circulating system is presented. A test apparatus which is a three-phase circulating fluidised bed was built with glass construction to visualise boiling phenomena in a water system. It could also be operated as a two-phase system and this was investigated to provide the basis for comparison and also to verify reproducibility and confirm well-established flow boiling results. For the three-phase system (where steel particles were added), a range of liquid flowrates and heat fluxes was used and three different particle sizes were investigated. Three-phase results were compared with two-phase results. This work is primarily a study of boiling heat transfer enhancement as a result of addition of particles, but the effect of the particles creating a self-cleaning heat exchanger is a significant operational advantage for industrial application.As expected, heat transfer coefficients were higher overall for the three-phase system than for the two-phase system. The onset of nucleate boiling was independent of heat flux and the heat transfer coefficient initially increased with increasing Reynolds number whereafter there was some deterioration of heat transfer. Visualisation of boiling heat transfer phenomena for the three-phase system is also provided which allows mechanistic explanations of the measured phenomena.In Part II of this paper, a correlation is developed, based on boiling heat transfer modelling, to describe heat transfer during boiling in a three-phase circulating fluidised bed. A flow-dependent function is added as is a boiling heat transfer enhancement factor. This correlation is validated against this experimental data and found to show agreement within about 20% and better agreement with the data than an existing correlation.  相似文献   

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