Fractal dimensions of aggregates formed in different fluid mechanical environments
暂无分享,去创建一个
[1] Bruce E. Logan,et al. Fractal dimensions of marine snow determined from image analysis of in situ photographs , 1994 .
[2] Particle trajectories in a rotating cylinder: implications for aggregation incubations , 1994 .
[3] Bruce E. Logan,et al. The abundance and significance of a class of large, transparent organic particles in the ocean , 1993 .
[4] K. Birdi. Fractals and Geochemistry , 1993 .
[5] Qing Jiang. Fractal structure of aggregates induced by shear motion. , 1993 .
[6] P. Hill. Reconciling aggregation theory with observed vertical fluxes following phytoplankton blooms , 1992 .
[7] Bruce E. Logan,et al. Fractal dimensions of aggregates determined from steady-state size distributions , 1991 .
[8] B. Logan,et al. Fractal dimensions and porosities of Zoogloea ramigera and Saccharomyces cerevisae aggregates , 1991, Biotechnology and bioengineering.
[9] George A. Jackson,et al. A model of the formation of marine algal flocs by physical coagulation processes , 1990 .
[10] K. P. Andersen,et al. Coagulation efficiency and aggregate formation in marine phytoplankton , 1990 .
[11] J. M. Cook,et al. The fractal approach to heterogeneous chemistry , 1990 .
[12] B. Logan,et al. Fractal geometry of marine snow and other biological aggregates , 1990 .
[13] A. Shanks,et al. Laboratory-made artificial marine snow: a biological model of the real thing , 1989 .
[14] J. Ganczarczyk,et al. Fractal geometry of particle aggregates generated in water and wastewater treatment processes , 1989 .
[15] R. C. Ball,et al. Universality in colloid aggregation , 1989, Nature.
[16] A. Alldredge,et al. In situ settling behavior of marine snow1 , 1988 .
[17] Alice L. Alldredge,et al. Characteristics, dynamics and significance of marine snow , 1988 .
[18] S. Fowler,et al. Role of large particles in the transport of elements and organic compounds through the oceanic water column , 1986 .
[19] J. Hunt. Self-similar particle-size distributions during coagulation: theory and experimental verification , 1982, Journal of Fluid Mechanics.
[20] J. Hunt. Prediction of Oceanic Particle Size Distributions from Coagulation and Sedimentation Mechanisms , 1980 .
[21] S. Friedlander,et al. Smoke, Dust and Haze: Fundamentals of Aerosol Behavior , 1977 .
[22] G. Wick,et al. The motion of a small sphere in a rotating velocity field: A possible mechanism for suspending particles in turbulence , 1977 .
[23] I. N. McCave. Vertical flux of particles in the ocean , 1975 .
[24] J. Gavis,et al. Transport limited nutrient uptake rates in Ditylum brightwellii1 , 1975 .
[25] J. J. Morgan,et al. Polymer Flocculation Kinetics of Dilute Colloidal Suspensions , 1968 .
[26] S. Friedlander. SIMILARITY CONSIDERATIONS FOR THE PARTICLE-SIZE SPECTRUM OF A COAGULATING, SEDIMENTING AEROSOL , 1960 .
[27] S. Friedlander. ON THE PARTICLE-SIZE SPECTRUM OF ATMOSPHERIC AEROSOLS , 1960 .
[28] Walter J. Murphy,et al. ADVANCES IN CHEMISTRY SERIES: Numbers 15 and 17 Demonstrate Rapidly Crowing Interest in Documentation; International Conference To Be Held in 1958 , 1956 .