Applied Mathematics and Mechanics (English Edition) ›› 2006, Vol. 27 ›› Issue (10): 1373-1381 .doi: https://doi.org/10.1007/s10483-006-1009-z
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ZENG Zhuo-xiong, ZHOU Li-xing, LIU Zhi-he
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Abstract: The USM-θ model of Bingham fluid for dense two-phase turbulent flow was developed, which combines the second-order moment model for two-phase turbulence with the particle kinetic theory for the inter-particle collision. In this model, phases interaction and the extra term of Bingham fluid yield stress are taken into account. An algorithm for USM-θ model in dense two-phase flow was proposed, in which the influence of particle volume fraction is accounted for. This model was used to simulate turbulent flow of Bingham fluid single-phase and dense liquid-particle two-phase in pipe. It is shown USM-θ model has better prediction result than the five-equation model, in which the particle-particle collision is modeled by the particle kinetic theory, while the turbulence of both phase is simulated by the two-equation turbulence model. The USM-θ model was then used to simulate the dense two-phase turbulent up flow of Bingham fluid with particles. With the increasing of the yield stress, the velocities of Bingham and particle decrease near the pipe centre. Comparing the two-phase flow of Bingham-particle with that of liquid-particle, it is found the source term of yield stress has significant effect on flow.
Key words: Bingham fluid, two-phase flow, yield stress, second-order moment model
2010 MSC Number:
O359
76T99
ZENG Zhuo-xiong;ZHOU Li-xing;LIU Zhi-he. SECOND-ORDER MOMENT MODEL FOR DENSE TWO-PHASE TURBULENT FLOW OF BINGHAM FLUID WITH PARTICLES. Applied Mathematics and Mechanics (English Edition), 2006, 27(10): 1373-1381 .
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URL: https://www.amm.shu.edu.cn/EN/10.1007/s10483-006-1009-z
https://www.amm.shu.edu.cn/EN/Y2006/V27/I10/1373