Title :
Drift/diffusion conduction model for flow electrification
Author :
Jansen, E.W. ; Zahn, M.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., MIT, Cambridge, MA, USA
Abstract :
A drift/diffusion model is developed for bipolar conduction with molecular charge recombination and generation process in a turbulent liquid dielectric between rotating concentric cylindrical electrodes. The analysis is used to model electrification in the turbulent flow of a Couette charger of coaxial cylinders with open-circuited, short-circuited, or DC voltage energized electrodes at various inner electrode rotational velocities. Specific electrode wall charge densities are found which yield near self-consistent solutions with measurements of open-circuit voltage, short-circuit current, and turbulent core charge densities. Typical experimental measurements indicate wall charge densities much larger than the equilibrium charge densities of each carrier, invalidating a quasiequilibrium ohmic conductivity model as the local conductivity near the wall is enhanced over the equilibrium conductivity. The enhanced conductivity is derivable from the numerical solution to the nonequilibrium drift/diffusion problem
Keywords :
Couette flow; diffusion in liquids; electrical conductivity of liquids; pipe flow; rotational flow; turbulence; Couette charger; bipolar conduction; coaxial cylinders; conduction model; drift/diffusion model; electrode wall charge densities; flow electrification; inner electrode rotational velocities; molecular charge generation; molecular charge recombination; numerical solution; open-circuit voltage; rotating concentric cylindrical electrodes; short-circuit current; turbulent core charge densities; turbulent flow; turbulent liquid dielectric; Charge measurement; Circuits; Coaxial components; Conductivity; Current measurement; Density measurement; Dielectric liquids; Electrodes; Power transformer insulation; Voltage;
Conference_Titel :
Electrical Insulation and Dielectric Phenomena, 1990. Annual Report., Conference on
Conference_Location :
Pocono Manor, PA
DOI :
10.1109/CEIDP.1990.201415