胶乳分离机高速转鼓内流场的数值分析Numerical Analysis on Flow-field Characteristics of High-Speed Bowl of Latex Disc-separator
薛晓宁,石凯
XUE Xiao-ning,SHI Kai
摘要(Abstract):
为了得到胶乳分离机高速转鼓在离心力场作用下的内部流场规律,建立胶乳物理特征、转鼓结构及转速与流场压力、速度之间的相互关系。基于FLUENT软件,对仿真建模、边界条件设置、计算方法进行了研究;选择混合多相流和层流模型,利用转鼓流场二维模型对内部流场进行了数值模拟,分析得到了流场的压力云图、速度云图以及出流区速度矢量图,定量评价了不同转速下流场压力、速度的变化,提出了一种利用特征参数验证模型的方法。分析结果表明:转鼓内流体压力、速度与流体所处半径成正比,流体速度、压力分别与转鼓转速呈一次、二次正比例关系,在工作转速下最大液体压力为10.4 MPa,重相出流区比轻相出流区存在更明显的漩涡现象,碟片间隙内液体流动状态为层流,仿真结果与理论计算值、文献压力数据及特征参数实测值较一致,验证了分析模型和分析方法的有效性。本研究为胶乳离心分离工艺、转鼓流场及结构优化提供了理论依据和分析方法。
In order to obtain distribution of flow field in centrifugal field in high-speed bowl of latex disc-separator,and to establish the relations among pressure-field,velocity-field and latex physical characteristics,blow structural,rotate speed. The model building、boundary restriction conditions and numerical computation method have been examined and debugged based on the FLUENT. The flowfield in the rotating bowl was numerically simulated by the two-dimensional flow field model abiding by principle of hybrid multiple phase flow and laminar flow model. The nephograms of pressure and velocity,the diagram of velocity vector were obtained. The pressure field and the velocity field were quantitatively analyzed under different velocities. The modeling vertification method based on characteristic parameter was proposed. The results indicate that the flow-pressure and the flow-velocity are proportional to the bowl rotation speed and the radius of liquid. Flow pressure is directly proportional to the rotation speed into a quadratic liner relationship,the flow velocity is directly proportional to the rotation speed into a liner relationship. The maximum liquid pressure increases up to 10. 4 MPa in the working speed. The vortex phenomenon of the outlet of heavy phase is more obviously than that of the outlet of light phase. The flow between two discs is primarily laminar. The simulation results are accordant with with the data taken from the theoretical calculation,the document and the experiments. The results show the validity of the model and analysis methods. The methods and results can provide more guidance and reference for analysis of latex centrifugal process and flow filed,structure optimize of latex disc-separator.
关键词(KeyWords):
胶乳分离机;转鼓;数值模拟;压力场;速度场;模型验证
latex separator;bowl;numerical simulation;pressure field;velocity field;model verification
基金项目(Foundation): 广东省教育厅科研基金项目(B9810);; 湛江市科技计划项目(B01490)
作者(Author):
薛晓宁,石凯
XUE Xiao-ning,SHI Kai
参考文献(References):
- [1]李连超,常近时.大型供水泵站吸水池模型流场PIV测试[J].中国农业大学学报,2002,7(4):100-103.
- [2]王国涛,徐燕.高速深井离心泵内部流场数值模拟与试验研究[J].流体机械,2015,43(4):8-11.
- [3]辛喆,吴俊宏,常近时.混流式水轮机的三维湍流流场分析与性能预测[J].农业工程学报,2010,26(3):118-123.
- [4]Chunlei Shao,Boqin Gu,Ye Chen.Numerical simulation of unsteady pressure field in centrifugal pumps[J].Transactions of the Transactions of the Chinese Society of Agricultural Engineering,2009,25(1):75-80.
- [5]索科罗夫著ВИ.离心分离理论及设备[M].汪泰临,孙启才,陈文梅,译.北京:机械工业出版社,1986.
- [6]孙启才,金鼎五.离心机原理结构与设计计算[M].北京:机械工业出版社,1987.
- [7]赵志国,石博强,李宴.润滑油分离机内部流场数值模拟与分离效率分析[J].农业工程学报,2011,27(8):163-167.
- [8]赵志国,石博强,李宴,等.基于Fluent的碟式分离机杂质颗粒运动流场分析[J].煤矿机械,2011,32(3):112-114.
- [9]张总.碟式分离机转鼓内流场研究[D].兰州:兰州理工大学,2009.
- [10]袁惠新,侯新瑞,付双成.碟片式离心机内流动的数值模拟[J].化工进展,2014,33(6):1403-1407.
- [11]Zhiguo Zhao.The influence of structural changes on the interior flow field’s characteristics of disc separator[J].Procedia Engineering,2011,15:5051-5055.
- [12]薛晓宁.平带传动碟式分离机[P].中国:发明ZL2008100290738,2011.4.13.
- [13]谭海生.胶乳制品工艺学[M].北京:中国农业出版社,2006.
- [14]何映平.天然橡胶加工学[M].海口:海南出版社,2007:9-128.
- [15]王福军.计算流体动力学分析-CFD软件原理与应用[M].北京:清华大学出版社,2004.
- [16]冯永利,于开安,李保廷.异构化原料分离塔的一塔两用改造设计[J].压力容器,2014,31(7):74-78.
- [17]慈智,赵会军,郭鹏,等.聚结分离器油水分离效率模拟试验研究[J].流体机械,2015,43(5):1-5.
- [18]李进良,李承曦,胡仁喜.精通FLUENT 6.3流场分析[M].北京:化学工业出版社,2009,9.
- [19]江帆,黄鹏.Fluent高级应用与实例分析[M].北京:清华大学出版社,2008,7.
- [20]卡查科夫НФ,马尔切诺夫ГA.食品机械制造工艺学[M].北京:机械工业出版社,1986:159.
- 胶乳分离机
- 转鼓
- 数值模拟
- 压力场
- 速度场
- 模型验证
latex separator - bowl
- numerical simulation
- pressure field
- velocity field
- model verification