文章摘要
王 苗, 李 琳, 安 昶, 纪媛媛.不同进流浓度梭锥管水沙两相流场三维数值模拟Journal of Water Resources and Water Engineering[J].,2015,26(4):136-142
不同进流浓度梭锥管水沙两相流场三维数值模拟
Three-dimension simulation on two phase flow field for water sediment in shuttle cone tube of different inflow concentration
  
DOI:10.11705/j.issn.1672-643X.2015.04.026
中文关键词: Mixture模型  PIV  数值模拟
英文关键词: water-sediment separation  mixture model  PIV  tree-dimension simulation
基金项目:国家自然科学基金项目(51009117);新疆水利水电工程重点学科基金(xjzdxk-2002-10-05)
Author NameAffiliation
WANG Miao1, LI Lin2, AN Chang1, JI Yuanyuan1 (1.新疆农业职业技术学院 工程分院 昌吉 831100 2.疆农业大学 水利与土木工程学院 乌鲁木齐 830052) 
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中文摘要:
      为了获得全面详细的梭锥管内部流动特性,本文探讨进流浓度对梭锥管内水沙分离效果的影响,据此来揭示梭锥管水力分离水沙的机理。本文采用重整化RNG (renormalization group)紊流模型与简化的多相流Mixture模型在泥沙浓度为5和 15 kg/m3时对梭锥管内水沙两相流场进行了三维的数值模拟计算。并将计算结果与PIV测量结果进行对比,计算结果与PIV测试结果一致。结果表明:在进流量相同时随着进流浓度的增加,在上锥管边壁清水上升通道内速度增加,水流挟沙力增强,随水流溢出的泥沙量增多,并且随着进流浓度的增加梭锥管各个断面泥沙体积浓度及紊动强度值也随之增加,上锥管得到的清水面积也随之减小,不利于梭锥管内水沙分离。
英文摘要:
      In order to get the comprehensive and detailed flow characteristics of shuttle cone tube,the paper investigated the effect of concentrations on the separation of water and sediment and revealed the mechanism of water-sediment separating in Shuttle-conical tube.The paper used renormalization RNG turbulence model (renormalization group) and simplified mixture model to carried out 3D numerical simulation when the sediment concentrations 5 and 15kg/m3. It compared the calculated results with the PIV measurement results and the calculation results agreed well with the measured data.The results show that with the increase of inflow concentration, the speed increase inside the rising water channel of the cone tube side wall when the inlet flow is the same.The sediment transport capacity enhances with the increase of sediment along water overflow.With the increase of inflow concentration sediment volume concentration,the turbulence intensity value also increase in Shuttle-conical tube of each section,and the water area on taper pipe decrease, which is not conducive to water and sediment separation in shuttle cone tube.
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