Principles of Gas-Solid Flows


Book Description

Discusses fundamental principles of gas-solid flows and their applications, and includes numerous examples and homework problems.







Fundamentals of Gas Particle Flow


Book Description

Fundamentals of Gas-Particle Flow is an edited, updated, and expanded version of a number of lectures presented on the "Gas-Solid Suspensions course organized by the von Karman Institute for Fluid Dynamics. Materials presented in this book are mostly analytical in nature, but some experimental techniques are included. The book focuses on relaxation processes, including the viscous drag of single particles, drag in gas-particles flow, gas-particle heat transfer, equilibrium, and frozen flow. It also discusses the dynamics of single particles, such as particles in an arbitrary flow, in a rotating gas, in a Prandtl-Meyer expansion, and in an oscillating flow. The remaining chapters of the book deal with the thermodynamics of gas-particle mixtures, steady flow through ducts, pressure waves, gas-particle jets, boundary layer, and momentum transfer. The experimental techniques included in this book present the powder feeders, the instrumentation on particle flow rate, velocity, concentration and temperature, and the measurement of the particle drag coefficient in a shock tube.




Characteristics of Dilute Gas-solids Suspensions in Drag Reducing Flow


Book Description

Measurements were performed on dilute flowing gas-solids suspensions and included data, with particles present, on gas friction factors, velocity profiles, turbulence intensity profiles, turbulent spectra, and particle velocity profiles. Glass beads of 10 to 60 micron diameter were suspended in air at Reynolds numbers of 10,000 to 25,000 and solids loading ratios from 0 to 4. Drag reduction was achieved for all particle sizes in vertical flow and for the smaller particle sizes in horizontal flow. The profile measurements in the vertical tube indicated that the presence of particles thickened the viscous sublayer. A quantitative theory based on particle-eddy interaction and viscous sublayer thickening has been proposed.




The Flow of Gas-solids Suspensions in Circulating Fluidized Beds


Book Description

CIRCULATING FLUIDIZED BED, SUPERFICIAL GAS VELOCITY, SOLIDS MASS FLUX, SOLIDS CONCENTRATION, SIMILAR PROFILE REGIME, OPTICAL FIBRE PROBE, DILUTE PHASE, L-VALVE, AERATION RATE, SOLIDS FLOW RATE.