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用MPS-DEM法数值分析输运速度对立管混输特性的影响 被引量:4
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作者 潘宣景 谢丰泽 万德成 《水动力学研究与进展(A辑)》 CSCD 北大核心 2021年第6期835-842,共8页
船舶与海洋工程在深海领域会采用立管进行矿物输运,涉及固液两相流混输的水动力学问题。近些年,随着海洋工程向深海发展,立管长度很大,液体流速较高,可能引起管道的破坏,输运效率降低等问题。利用数值模拟高雷诺数下的长管道流动,计算... 船舶与海洋工程在深海领域会采用立管进行矿物输运,涉及固液两相流混输的水动力学问题。近些年,随着海洋工程向深海发展,立管长度很大,液体流速较高,可能引起管道的破坏,输运效率降低等问题。利用数值模拟高雷诺数下的长管道流动,计算量很大。考虑多相流自身的复杂性,该文采用无网格粒子法中的移动粒子半隐式方法(Moving Particle Semi-Implicit Method,MPS)和离散单元法(Discrete Element Method,DEM)相结合的方法,对不同输运速度下颗粒的水力输运进行了数值研究。基于此该文采用课题组自主开发的MPSDEM-SJTU求解器,针对定长圆管,分析不同输运速度工况下的瞬时流态和时间平均变量(包括轴向液体速度,颗粒位置分布和转动角速度等),这些结果有望为优化水力输运提供参考。 展开更多
关键词 海洋立管 液-固混输 MPS方法 DEM方法 运速度
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The Study of Latent Heat Transport Characteristics by Solid Particles and Saccharide Solution Mixtures
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作者 Shin-ichi MORITA Yasutaka HAYAMIZU Hideo INABA 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第2期155-160,共6页
The purpose of this study is the development of latent heat transport system by using the mixture of the minute latent heat storage materials and the saccharine solution as medium. The experimental studies are carried... The purpose of this study is the development of latent heat transport system by using the mixture of the minute latent heat storage materials and the saccharine solution as medium. The experimental studies are carried out by the evaluation of viscosity and pressure loss in a pipe. Polyethylene (P.E.) is selected as the dispersed minute material that has closeness density (920kg/m3) of ice (917kg/m3). D-sorbitol and D-xylose solutions are picked as continuum phase of the test mixture. The concentration of D-sorbitol solution is set 48mass% from measured results of saturation solubility and the melting point. 40mass% solution of D-xylose is selected as the other test continuum phase. The non-ion surfactant, EA157 Dai-ichiseiyaku CO. Ltd, is used in order to prevent of dispersed P.E. powder cohere. The pressure loss of test mixture is measured by the straight circular pipe that has smooth inner surface. The measuring length for pressure loss is 1000 mm, and the inner diameter of pipe is 15mm. The accuracy of experiment apparatus for measuring pressure loss is within ±5%. The pressure loss data is estimated by the relationship between the heat transport ratio and the required pump power. It is clarified that the optimum range of mixing ratio exists over 10mass% of latent heat storage material. 展开更多
关键词 Latent heat transport Heat storage Multiphase flow
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