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Simulation of physiological impedances using lumped and distributed fluid elements
General theory of hydraulic transmission lines utilizing model developed by V.Hardung for flexible viscoelastic tubes serves as basis for present study; desired input impedances were determined analytically by using general distributed element relation from electrical transmission line theory; combinations of impedances of branch and of downstream segment of main line were analyzed using parallel impedance relation common to lumped electrical circuit analysis; analogy between hydraulic and electric transmission lines has indirectly been strengthened by using with success both distributed element and parallel impedance relations from electrical realm in hydraulic situation.
Simulation of physiological impedances using lumped and distributed fluid elements
General theory of hydraulic transmission lines utilizing model developed by V.Hardung for flexible viscoelastic tubes serves as basis for present study; desired input impedances were determined analytically by using general distributed element relation from electrical transmission line theory; combinations of impedances of branch and of downstream segment of main line were analyzed using parallel impedance relation common to lumped electrical circuit analysis; analogy between hydraulic and electric transmission lines has indirectly been strengthened by using with success both distributed element and parallel impedance relations from electrical realm in hydraulic situation.
Simulation of physiological impedances using lumped and distributed fluid elements
ASCE -- Relation Eng Mechanics Research Practice Civ Eng
Roller, M.L. (author) / Clark, M.E. (author)
ASCE -- Relation of Eng Mechanics Research to Practice of Civil Eng ; 1966
1966
30 pages
Conference paper
English
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