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TECHNICAL BRIEFS

A Nonlinear k-ε-kp Two-Phase Turbulence Model

[+] Author and Article Information
L. X. Zhou, H. X. Gu

Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China

J. Fluids Eng 125(1), 191-194 (Jan 22, 2003) (4 pages) doi:10.1115/1.1522414 History: Received January 19, 2000; Revised June 20, 2002; Online January 22, 2003
Copyright © 2003 by ASME
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References

Zhou, L. X., 1993, Theory and Numerical Modeling of Turbulent Gas-Particle Flows and Combustion, Science Press, Beijing and CRC Press, Boca Raton, FL, pp. 156–161.
Simonin, O., 1996, “Continuum Modeling of Dispersed Turbulent Two-Phase Flows” (Lecture Series 1996-02 at the von Karman Institute for Fluid Dynamics: Combustion and Turbulence in Two-phase Flows), Von Karman Institute for Fluid Dynamics, Rhode-St. Ganèse, Belgium, pp. 1–47.
Zaichik,  L. I., 1996, “An Equation for the Particle Velocity Probability Density Function in Inhomogeneous Turbulent Flow,” Fluid Dyn., 31 (2).
Zhou,  L. X., and Chen,  T., 2001, “Simulation of Strongly Swirling Gas-Particle Flows Using USM and k-ε-kp Two-Phase Turbulence Models,” Powder Technol., 114, pp. 1–11.
Shih,  T.-H., and Lumley,  J. L., 1993, “Remarks on Turbulent Constitutive Relations,” Math. Comput. Modell., 18, pp. 1377–1387.
Zhou, L. X., Liao, C. M., and Chen, T., 1994, “A Unified Second-Order Moment Two-Phase Turbulence Model for Simulating Gas-Particle Flows,” Numerical Methods in Multiphase Flows, ASME-FED-185, ASME, New York, pp. 307–313.
Sommerfeld,  M., and Qiu,  H. H., 1991, “Detailed Measurement of a Swirling Particulate Two-Phase Flow by a Phase Doppler Anemometer,” Int. J. Heat Fluid Flow, 12, pp. 20–28.

Figures

Grahic Jump Location
Axial velocity of 45 μm particles (m/s, s=0.47) (• Exp, —NKP, ⋯USM)
Grahic Jump Location
Tangential velocity of 45 μm particles (m/s, s=0.47) (• Exp, —NKP, ⋯USM)
Grahic Jump Location
Axial fluctuation velocity of 45 μm particles (m/s, s=0.47) (• Exp, —NKP, ⋯USM)
Grahic Jump Location
Tangential fluctuation velocity of 45 μm particles (m/s, s=0.47) (• Exp, —NKP, ⋯USM)

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