18.5. References 81-100

81

Sutherland, W.,

"The Viscosity of Gases and Molecular Force",

Phil. Mag. 5:507-531, 1893.

82

Hirschfelder, J.O., Taylor, and M.H., Bird, R.B.,

"Molecular Theory of Gases and Liquids",

Wiley, New York, 1954.

83

Chung, T.H., Lee, L.L., and Starling, K.E.,

"Applications of Kinetic Gas Theories and Multiparameter Correlation for Prediction of Dilute Gas Viscosity and Thermal Conductivity",

Ind. Eng. Chem. Fundam.

23:8, 1984.

84

Poling, B.E., Prausnitz, J.M., and O’Connell, J.P.,

"The Properties of Gases and Liquids",

McGraw-Hill, New York, 2001.

85

Redlich, O., and Kwong, J.N.S.,

"On the Thermodynamics of Solutions. V. An Equation of State. Fugacities of Gaseous Solutions.",

Chem Rev 44:233, 1949.

86

Saffman, P. G.,

"The lift on a small sphere in a slow shear flow",

J. Fluid Mech., 22, p. 385, 1965.

87

Mei, R. and Klausner, J. F.,

"Shear lift force on spherical bubbles",

Int. J. Heat and Fluid Flow, 15, p. 62, 1994.

88

Antal, S. P., Lahey, R. T., and Flaherty, J. E.,

"Analysis of phase distribution in fully developed laminar bubbly two-phase flow",

Int. J. Multiphase Flow, 7, pp. 635-652, 1991.

89

Krepper, E., and Prasser, H-M.,

"Measurements and CFX Simulations of a bubbly flow in a vertical pipe",

in AMIFESF Workshop, Computing Methods in Two-Phase Flow, 2000.

90

Burns, A.D.B., Frank, Th., Hamill, I., and Shi, J-M.,

"The Favre Averaged Drag Model for Turbulent Dispersion in Eulerian Multi-Phase Flows",

5th International Conference on Multiphase Flow, ICMF-2004, Yokohama, Japan.

91

Moraga, J.F., Larreteguy, A.E., Drew, D.A., and Lahey, R.T.,

"Assessment of turbulent dispersion models for bubbly flows in the low Stokes number limit",

Int. J. Multiphase Flow, 29, p. 655, 2003.

92

CIBSE Guide A: Environmental Design

CIBSE, U.K., 1999.

93

ISO 7730-1984(E), Moderate thermal environments - Determination of the PMV and PPD indices and specification of the conditions for thermal comfort

1984.

94

Yamada, T. and R.D. Gunn,

J. Chem Eng. Data, 18, p. 234, 1973.

95

Pitzer, K.S., D.Z. Lippmann, R.F. Curl, C.M. Huggins, and D.E. Petersen,

J. Am. Chem. Soc., 77: 3433 (1955).

96

Aungier, R.H.,

"A Fast, Accurate Real Gas Equation of State for Fluid Dynamic Analysis Applications",

Journal of Fluids Engineering, Vol. 117, pp. 277-281, 1995.

97

H. Enwald, E. Peirano and A. E. Almstedt,

"Eulerian Two-Phase Flow Theory Applied to Fluidisation",

Int. J. Multiphase Flow, 22 Suppl., pp. 21-66,1996.

98

J. Ding and D. Gidaspow,

"A Bubbling Fluidisation Model using Theory of Granular Flow",

AIChEJ. 36, pp. 523-538, 1990.

99

C.K.K. Lun, S.B. Savage, D.J. Jeffery, and N. Chepurniy,

"Kinetic Theories for Granular Flow: Inelastic Particles in Couette Flow and Slightly Inelastic Particles in a General Flow Field",

J. Fluid Mech., 140, pp. 223-256, 1984.

100

C.K.K. Lun, and S.B. Savage,

"The Effects of an Impact Velocity Dependent Coefficient of Restitution on Stresses Developed by Sheared Granular Materials",

Acta Mechanica., 63, pp. 15-44, 1986.