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首页> 外文期刊>International Journal of Computational Fluid Dynamics >Direct numerical simulation of free falling sphere in creeping flow
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Direct numerical simulation of free falling sphere in creeping flow

机译:自由下落球在蠕变流中的直接数值模拟

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In the present study, direct numerical simulations (DNS) are performed on single and a swarm of particles settling under the action of gravity. The simulations have been carried out in the creeping flow range of Reynolds number from 0.01 to 1 for understanding the hindrance effect, of the other particles, on the settling velocity and drag coefficient. The DNS code is a non-Lagrange multiplier-based fictitious-domain method, which has been developed and validated by Jin et al. (200826. Jin , S. A parallel algorithm for the direct numerical simulation of 3D inertial particle sedimentation . Conference proceedings of the 16th annual conference of the CFD Society of Canada . Edited by: Bergstrom , D. J. and Spiteri , R. 9-11, June . Saskatoon, Saskatchewan, , Canada View all references; A parallel algorithm for the direct numerical simulation of 3D inertial particle sedimentation. In: Conference proceedings of the 16th annual conference of the CFD Society of Canada). It has been observed that the time averaged settling velocity of the particle in the presence of other particles, decreases with an increase in the number of particles surrounding it (from 9 particles to 245 particles). The effect of the particle volume fraction on the drag coefficient has also been studied and it has been observed that the computed values of drag coefficients are in good agreement with the correlations proposed by Richardson and Zaki (195441. Richardson , J. F. and Zaki , W. N. 1954 . Sedimentation and fluidization: part I . Transactions of the Institution of Chemical Engineers , 32 : 35 - 53 . View all references; Sedimentation and fluidization: part I. Transactions of the Institution of Chemical Engineers, 32, 35-53) and Pandit and Joshi (199835. Pandit , A. B. and Joshi , J. B. 1998 . Pressure drop in packed, expanded and fluidized beds, packed columns and static mixers - a unified approach . Reviews in Chemical Engineering , 14 : 321 - 371 . [CrossRef], [Web of Science ®]View all references; Pressure drop in packed, expanded and fluidised beds, packed columns and static mixers - a unified approach. Reviews in Chemical Engineering, 14, 321-371). The suspension viscosity-based model of Frankel and Acrivos (196714. Frankel , N. A. and Acrivos , A. 1967 . On the viscosity of a concentrated suspension of solid spheres . Chemical Engineering Science , 22 : 847 - 853 . [CrossRef], [Web of Science ®]View all references; On the viscosity of a concentrated suspension of solid spheres. Chemical Engineering Science, 22, 847-853) shows good agreement with the DNS results.View full textDownload full textKeywordsDNS, drag coefficient, falling spheres, settling velocity, creeping flowsRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/10618562.2010.495320
机译:在本研究中,直接数值模拟(DNS)在重力作用下对单个和大量粒子沉降进行。为了了解其他粒子对沉降速度和阻力系数的阻碍作用,已经在雷诺数的蠕变流动范围从0.01到1的范围内进行了模拟。 DNS代码是一种非基于Lagrange乘数的虚拟域方法,由Jin等人开发并验证。 (200826. Jin,S. 3D惯性粒子沉降直接数值模拟的并行算法。加拿大CFD学会第16届年会会议记录,编辑:Bergstrom,DJ和Spiteri,R。9-11,六月,萨斯卡通,加拿大萨斯喀彻温省,加拿大查看所有参考文献;一种用于3D惯性颗粒沉降直接数值模拟的并行算法(加拿大CFD学会第16届年会会议记录)。已经观察到,在存在其他颗粒的情况下,该颗粒的时间平均沉降速度随其周围的颗粒数量增加(从9个颗粒增加到245个颗粒)而降低。还研究了颗粒体积分数对阻力系数的影响,观察到阻力系数的计算值与Richardson和Zaki(195441。Richardson,JF和Zaki,WN 1954)提出的相关性很好。 。沉积和流化:第一部分。化学工程师学会学报,32:35-53。查看所有参考文献;沉积和流化:第一部分。化学工程师学会学报,32,35-53)和Pandit和Joshi(199835. Pandit,AB和Joshi,JB 1998。在填料床,膨胀床和流化床,填料塔和静态混合器中的压降-统一方法。化学工程评论,14:321-371。[CrossRef],[Web [查看所有参考文献;填充床,膨胀床和流化床,填充柱和静态混合器中的压降-统一的方法。评论见化学工程,第14卷,第321-371页)。基于悬浮液粘度的Frankel和Acrivos模型(196714. Frankel,NA和Acrivos,A. 1967.关于固体球浓缩悬浮液的粘度。化学工程科学,22:847-853。[CrossRef],[Web [查看所有参考文献;关于固体球浓缩悬浮液的粘度,化学工程科学,22,847-853)与DNS结果显示出良好的一致性。查看全文下载全文关键字DNS,阻力系数,落球,沉降速度,蠕动流量相关变量var addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,servicescompact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b” };添加到候选列表链接永久链接http://dx.doi.org/10.1080/10618562.2010.495320

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