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Similarity solutions of vertical plane wall plume based on finite analytic method
The turbulent flow of vertical plane wall plume with concentration variation was studied with the finite analytical method. The k-epsilon model with the effect of buoyancy on turbulent kinetic energy and its dissipation rate was adopted. There were similarity solutions in the uniform environment for...
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Published in: | Applied mathematics and mechanics 2007-04, Vol.28 (4), p.447-454, Article 447 |
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description | The turbulent flow of vertical plane wall plume with concentration variation was studied with the finite analytical method. The k-epsilon model with the effect of buoyancy on turbulent kinetic energy and its dissipation rate was adopted. There were similarity solutions in the uniform environment for the system of equations including the equation of continuity, the equation of momentum along the flow direction and concentration, and equations of k, epsilon. The finite analytic method was applied to obtain the similarity solution. The calculated data of velocity, relative density difference, the kinetic energy of turbulence and its dissipation rate distribution for vertical plane plumes are in good agreement with the experimental data at the turbulent Schmidt number equal to 1.0. The variations of their maximum value along the direction of main flow were also given. It shows that the present model is good, i.e., the effect of buoyancy on turbulent kinetic energy and its dissipation rate should be taken into account, and the finite analytic method is effective. |
doi_str_mv | 10.1007/s10483-007-0404-z |
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The k-epsilon model with the effect of buoyancy on turbulent kinetic energy and its dissipation rate was adopted. There were similarity solutions in the uniform environment for the system of equations including the equation of continuity, the equation of momentum along the flow direction and concentration, and equations of k, epsilon. The finite analytic method was applied to obtain the similarity solution. The calculated data of velocity, relative density difference, the kinetic energy of turbulence and its dissipation rate distribution for vertical plane plumes are in good agreement with the experimental data at the turbulent Schmidt number equal to 1.0. The variations of their maximum value along the direction of main flow were also given. It shows that the present model is good, i.e., the effect of buoyancy on turbulent kinetic energy and its dissipation rate should be taken into account, and the finite analytic method is effective.</description><edition>English ed.</edition><identifier>ISSN: 0253-4827</identifier><identifier>EISSN: 1573-2754</identifier><identifier>DOI: 10.1007/s10483-007-0404-z</identifier><language>eng</language><publisher>Dordrecht: Springer Nature B.V</publisher><subject>Buoyancy ; Computational fluid dynamics ; Energy ; Energy dissipation ; Fluid flow ; Kinetic energy ; Mathematical analysis ; Mathematical models ; Plumes ; Schmidt number ; Similarity solutions ; Turbulence ; Turbulent flow ; Vertical distribution ; 垂直平面壁 ; 有限解析法 ; 浮力效应 ; 相似解</subject><ispartof>Applied mathematics and mechanics, 2007-04, Vol.28 (4), p.447-454, Article 447</ispartof><rights>Editorial Committee of Appl. Math. Mech. 2007.</rights><rights>Copyright © Wanfang Data Co. Ltd. All Rights Reserved.</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c367t-11b8cd97d70fabb3ed5df6ac5c62a2c2f54e37f0e8005e7ffded7cfbc0966dbf3</citedby><cites>FETCH-LOGICAL-c367t-11b8cd97d70fabb3ed5df6ac5c62a2c2f54e37f0e8005e7ffded7cfbc0966dbf3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Uhttp://image.cqvip.com/vip1000/qk/86647X/86647X.jpg</thumbnail><link.rule.ids>314,776,780,27901,27902</link.rule.ids></links><search><creatorcontrib>槐文信 曾玉红</creatorcontrib><title>Similarity solutions of vertical plane wall plume based on finite analytic method</title><title>Applied mathematics and mechanics</title><addtitle>Applied Mathematics and Mechanics(English Edition)</addtitle><description>The turbulent flow of vertical plane wall plume with concentration variation was studied with the finite analytical method. The k-epsilon model with the effect of buoyancy on turbulent kinetic energy and its dissipation rate was adopted. There were similarity solutions in the uniform environment for the system of equations including the equation of continuity, the equation of momentum along the flow direction and concentration, and equations of k, epsilon. The finite analytic method was applied to obtain the similarity solution. The calculated data of velocity, relative density difference, the kinetic energy of turbulence and its dissipation rate distribution for vertical plane plumes are in good agreement with the experimental data at the turbulent Schmidt number equal to 1.0. The variations of their maximum value along the direction of main flow were also given. It shows that the present model is good, i.e., the effect of buoyancy on turbulent kinetic energy and its dissipation rate should be taken into account, and the finite analytic method is effective.</description><subject>Buoyancy</subject><subject>Computational fluid dynamics</subject><subject>Energy</subject><subject>Energy dissipation</subject><subject>Fluid flow</subject><subject>Kinetic energy</subject><subject>Mathematical analysis</subject><subject>Mathematical models</subject><subject>Plumes</subject><subject>Schmidt number</subject><subject>Similarity solutions</subject><subject>Turbulence</subject><subject>Turbulent flow</subject><subject>Vertical distribution</subject><subject>垂直平面壁</subject><subject>有限解析法</subject><subject>浮力效应</subject><subject>相似解</subject><issn>0253-4827</issn><issn>1573-2754</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><recordid>eNpdkc1LHTEUxUOp0FfbP6C7oIuCMO3N97gUaW1BEFHXIZMPXzQzeU5mquNf3wxPuujqnsXvXs49B6EvBL4RAPW9EOAta6psgANvXt-hDRGKNVQJ_h5tgArW8JaqD-hjKQ8AwBXnG3R9E_uYzBinBZec5inmoeAc8B8_TtGahHfJDB4_m7TKufe4M8U7nAcc4hAnj81g0lJZ3Ptpm90ndBBMKv7z2zxEdz9_3J7_ai6vLn6fn102lkk1NYR0rXWnyikIpuuYd8IFaaywkhpqaRDcMxXAtwDCqxCcd8qGzsKplK4L7BCd7O8-myGY4V4_5HmsVopelvKyTS_a0xpHTQN4hb_u4d2Yn2ZfJt3HYn1af8tz0a0QUjHgpJLH_5H_7lIpedtyKqBSZE_ZMZcy-qB3Y-zNuGgCei1E7wvRq1wL0a915-htZ5uH-6dYLXfGPoaYvKacMi5Vy_4CBq-LUw</recordid><startdate>20070401</startdate><enddate>20070401</enddate><creator>槐文信 曾玉红</creator><general>Springer Nature B.V</general><general>State Key Laboratory of Water Resources and Hydropower Engineering Science,Wuhan University, Wuhan 430072, P. 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The k-epsilon model with the effect of buoyancy on turbulent kinetic energy and its dissipation rate was adopted. There were similarity solutions in the uniform environment for the system of equations including the equation of continuity, the equation of momentum along the flow direction and concentration, and equations of k, epsilon. The finite analytic method was applied to obtain the similarity solution. The calculated data of velocity, relative density difference, the kinetic energy of turbulence and its dissipation rate distribution for vertical plane plumes are in good agreement with the experimental data at the turbulent Schmidt number equal to 1.0. The variations of their maximum value along the direction of main flow were also given. It shows that the present model is good, i.e., the effect of buoyancy on turbulent kinetic energy and its dissipation rate should be taken into account, and the finite analytic method is effective.</abstract><cop>Dordrecht</cop><pub>Springer Nature B.V</pub><doi>10.1007/s10483-007-0404-z</doi><tpages>8</tpages><edition>English ed.</edition></addata></record> |
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subjects | Buoyancy Computational fluid dynamics Energy Energy dissipation Fluid flow Kinetic energy Mathematical analysis Mathematical models Plumes Schmidt number Similarity solutions Turbulence Turbulent flow Vertical distribution 垂直平面壁 有限解析法 浮力效应 相似解 |
title | Similarity solutions of vertical plane wall plume based on finite analytic method |
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