
Bibliography
-
[1]
-
Abe, T. Fujikawa, T. and
Ito, S., A calculation method of pulsation in a piping system, Bull. J.S.M.E.,
1970, 13(59), 678-687.
-
[2]
-
Alin, J. S., Determination
of friction factors for pulsatile flow of water in distensible tubes, PhD
thesis, 1970, University of Cincinnati, USA.
-
[3]
-
Ahn, J. S. and Hershey,
D., Determination of friction factors for pulsatile flow of water in distensible
tubes, A.I.Ch.E.Jl, 1973, 19(7), 15-21.
-
[4]
-
Atabeck, H. B., Chang,
C. C. and Fingerson, L. M., Measurement of laminar oscillatory flow in
the inlet of a circular tube, Ph.vs. Med. Biol., 1964, 9,219.
-
[5]
-
Babenko. G. S. and Smimov,
A. M. Effects of the viscosity of liquids in hydraulic piping on its dynamic
properties, Automation and Remote Control, 1963. 24(1), 106 (English translation,
Sept. 1963).
-
[6]
-
Biomedical fluid mechanics
symposium, ASME Fluids Engineering Division, Denver, Colorado, 1966.
-
[7]
-
Brown, F. T, Margolis,
D. L. and Shah, R. P., Small-amplitude-frequency behaviour of fluid lines
with turbulent flow, Trans. ASME, J. Basic Engng, 1969, 91. 678-693.
-
[8]
-
Campbell, J. L. III, The
behaviour of a fluid in elastic tubing containing wave reflection sites,
PhD thesis, 1967, Clemson University, USA.
-
[9]
-
Crane, C. M., A new method
for the numerical solution of time dependent viscous flow, Appl. Sci. Res.,
1974, 30, 47-77.
-
[10]
-
Davis D. C. and Stecki,
J. S., Frequency Response of Long Fluid Transmission Lines Containing Discrete
Capacitance Elements, Trans. I.E. Aust. Mech. Eng., 1989, ME14, Vol 3,
pp 121-133.
-
[11]
-
Edwards, M. F. and Wilkinson,
W. L., Review of potential applications of pulsating flow in pipes, Trans.
Instn Chem. Engrs, 1971, 49, 85-94.
-
[12]
-
Evans, R. L., A unifying
approach to blood flow theory, J. Theor. Biol., 1962, 3, 392-411.
-
[13]
-
Ezekiel, F. D. and Paynter,
H. M., Computer Representations of Engineering Systems Involving Fluid
Transients, Trans. A.S.M.E., 1957, 79, 1840-1850.
-
[14]
-
Fan, C., Non-steady viscous,
incompressible flow in cylindrical and rectangular conduits (with emphasis
on periodically oscillating flow), PhD thesis, 1964, University of Illinois,
USA.
-
[15]
-
Franke, M. E. and Moore,
E. F., Dynamic response approximation of non-circular fluid lines, Trans.
ASME, J. Dyn. Syst. Meas. Cont., 1976, 98, 421-424.
-
[16]
-
Funk. J. E. and Wood,
D. J., Frequency response of fluid lines with turbulent flow, Trans. ASME.
J. Fluids Engng. 1974, 96(4), 365-369.
-
[17]
-
Gazis, D. G., Three-dimensional
investigation of the propagation of waves in hollow circular cylinders.
J. Acoust. Soc. Am., 1959, 31(5), 568-578.
-
[18]
-
Gibson, N. R., Pressures
in penstocks caused by the gradual closing of turbine gates, Trans. Am.
Soc. Civ. Engrs., 1920, 83(1439), 707-775.
-
[19]
-
Gilbrech, D. A. and Coombs,
G. D., Critical Reynolds numbers for incompressible pulsating flow in tubes,
Developments in Theoretical and Applied Mechanics. Vol. 1, 1963. 292 (Plenum
Press. New York).
-
[20]
-
Goldschmied, F. R., An
experimental study of viscous flow of incompressible fluid in rigid pipes,
Proc. Flow its Measurement and Control in Science and Industry, 1971. ISA,
Pittsburgh, Pennsylvania, 185-195.
-
[21]
-
Goodson, R. E., Viscous
and boundary effects in fluid lines, PhD thesis, 1963, Purdue University,
USA.
-
[22]
-
Goodson, R. E., Distributed
system simulation using infinite product expansions, Simulation, 1970,
15(6), 255-262.
-
[23]
-
Harris, J, Peev, J. and
Wilkinson, W. L., Velocity profiles in laminar oscillatory flow in tubes,
J. Sci. Instr., 1969, Series 2, 2, 913-916.
-
[24]
-
Hayanna, S., Mohri, Y.
and Watanabe, T., Resonant amplitudes of pressure pulsation in pipelines
(ist report: resonant amplitudes in case of a single sinusoidal flow input),
Bull. J.S.M.E., 1977, 20(146) 944-962.
-
[25]
-
Hershey, D. and Song,
G., Friction factors and pressure drop for sinusoidal laminar flow of water
and blood in rigid tubes, A.I.Ch.E.Jl, 1967,13(3), 491-496.
-
[26]
-
Hougen, J. O., Martin,
O. R. and Walsh, R. A., Dynamics of pneumatic transmission lines, Control
Engineering, 1963, 10(9), 114.
-
[27]
-
Hughes, W. F., Some aspects
of wave propagation in viscous liquids in conduits, Appl. Sci. Res., 1963,
Section A. 12, 119---133.
-
[28]
-
Inaba, T. and Murata,
S., Pulsating laminar flow in a sinusoidally curved pipe, Bull. J.S.M.E.,
1978, 21(155), 832-839.
-
[29]
-
Ito, H., Theory of laminar
flow through a pipe with non-steady pressure gradients, Proc. Inst. High
Speed Mechanics, Tohoku University, Japan, 1953, 30, 163.
-
[30]
-
Jarski, E. J., Dynamics
of viscous fluid oscillations in hydraulic lines, PhD thesis, 1970, University
of Maryland, USA.
-
[31]
-
Johnson, B. L., Dynamic
response characteristics of fluid transmission lines, PhD thesis, 1962,
Iowa State University of Science and Technology, USA.
-
[32]
-
Kantola, R. A., Transient
response of fluid lines including frequency modulated inputs, Trans. ASME,
J. Basic Engng. 1971, 93, 274-282.
-
[33]
-
Karam, J. T., A simple
time domain model for fluid transmission lines, PhD thesis, 1972, Purdue
University, USA.
-
[34]
-
Katz, S., Transient response
of fluid lines by frequency response conversion, Trans. ASME, J. Dyn. Syst.
Meas. Cont., 1977, 99(4), 310- 313.
-
[35]
-
Kinsler, L. E. and Frev,
A. E., Fundamentals of acoustics, Second edition, 1962, pp. 186-196 (Wiley,
New York).
-
[36]
-
Korteweg, D. J., Uber
die Fortpflanzunges geschwindigkeit des Schalles in elastischen Rohren,
Annalen der Physik and Chemie, Ser. 3, 1878, 5, 525-542.
-
[37]
-
Leonard. R. G., A simplified
model for a fluid transmission line, PhD thesis, 1970, The Pennsylvania
State University, USA.
-
[38]
-
Linford, R., A study of
pulsatile flow phenomenon, PhD thesis, 1961, University of Utah, USA.
-
[39]
-
McDonald, D. A., Blood
flow in arteries, 1960, (Edward Arnold, London).
-
[40]
-
Magnusson, P.C., Transmission
lines and wave propagation, First edition, 1965, pp. 145-149 (Allyn and
Bacon, Boston).
-
[41]
-
Masligah, J. H. and Shook,
C. A., Laminar transient flow in pipes, Can. J. Chem. Engng, 1975, 53,
469-475.
-
[42]
-
Merkli, P. and Thoman,
H., Transition to turbulence in oscillating pipe flow, J. Fluid Mech.,
1975, 68, Pt. 3, 567-575.
-
[43]
-
Moore, R. K., Traveling-wave
engineering, 1960, (McGraw-Hill, New York).
-
[44]
-
Ohmi, M. and Usui, T.,
Pressure and velocity distributions in pulsating turbulent pipe flow: Part
1-theoretical treatments, Bull. J.S.M.E., 1976, 19(129). 307-313.
-
[45]
-
Phillips, E. M. and Chiang,
S. H., Pulsatile Newtonian frictional losses in a rigid tube, Int. J. Engng.
Sci., 1973, 11, 579-589.
-
[46]
-
Richardson, P. D. Comments
on viscous damping in oscillating liquid columns, Int. J. Mech. Sci.. 1963,
5(5), 415-418.
-
[47]
-
Roschke, E. J., Periodic
fluid flow in rigid and flexible tubes,. PhD thesis, 1959, Purdue University,
USA.
-
[48]
-
Sarlat, I. M. and Wilson,
T. L., Surge pressures in liquid transfer lines, Trans. ASME, J. Basic
Engng, 1962, 84, 363-368.
-
[49]
-
Schonfeld, J.C., Resistance
and inertia of the flow of liquids in a tube or open canal, Appi. Sci.
Res., 1948, A1(3), 169-197.
-
[50]
-
Schultz-Grunow, F., Pulsierender
Durchfiuss durch Rohre. Forsch. Geb. Ing. Wes., 1940, 11, 170 -187.
-
[51]
-
Shields, F. D, Lee, K.
P. and Wiley, W. J., Numerical solution for sound velocity and absorption
in cylindrical tubes, J. Acoust. Soc. Am., 1965, 37(4), 724-729.
-
[52]
-
Sidell. R. S. and Wormley,
D. N., An efficient simulation method for distributed lumped fluid networks,
Trans. ASME, J. Dyn. Syst. Meas. Cont., 1977, 99, 34-40.
-
[53]
-
Skalak, R., Wave propagation
in blood flow, Biomechanics Symposium, 1966, 20-46 (ASME, New York).
-
[54]
-
Stecki, J. S. and Davis,
D. C., Fluid Transmission Lines - Distributed Parameter Models. Part 1:
A Review of the State of the Art, Proceedings I.Mech.E., 1986, Vol. 200,
No. A4, pp 215-228.
-
[55]
-
Stecki, J. S. and Davis,
D. C., Fluid Transmission Lines - Distributed Parameter Models. Part 2:
Comparison of Models, Proceedings I.Mech.E., 1986, Vol. 200, No. A4, pp
229-236.
-
[56]
-
Streeter, V. L., Computer
solution of surge problems, Symposium on Surges in Pipelines, Proc. Instn
Mech. Engrs, 1965-1966, 180, Pt. 3E.
-
[57]
-
Streeter, V. L and Lai,
C., Water-hammer analysis including fluid friction, J. Hydraul. Div., Am.
Soc. Civ. Engrs, 1962, 88, HY3, 79-112.
-
[58]
-
Thurston, G. B., Periodic
fluid flow through circular tubes, J. Acoust. Soc. Am., 1952, 24(6), 653-656.
-
[59]
-
Tijdeman, H., Remarks
on the frequencs response of pneumatic lines, Trans. ASME, J. Basic Engng,
1969, 91, 325-327.
-
[60]
-
Tijdeman, H., On the propagation
of sound waves in cylindrical tubes, J. Sound Vib., 1975, 39(1), 1-33.
-
[61]
-
Tsao, S., Numerical solutions
of transients in pneumatic networks transmission-line calculations, Trans.
ASME, J. Appl. Mech, 1968, 35, 588-595.
-
[62]
-
Viersma, T. J., Analysis
synthesis and design of hydraulic servo-systems and pipelines, First edition,
1980 (Elsevier, Amsterdam).
-
[63]
-
Von Kries, J., Studien
zur Pulsehre, Akad. Uerlagsbuch. von J.C.B. Mohr, Freiburg IB, 1892, 8-9,
127-128.
-
[64]
-
Washio, S., Konishi, T.
and Okamura, K., Research on wave phenomena in hydraulic lines (1st report
unsteady liquid flow in a uniform pipe), Bull. J.S.M.E., 1974, 17, (111),
1157-1164.
-
[65]
-
Washio, S., Konishi, T.
and Okamura, K., Research on wave phenomena in hydraulic lines (2nd report:
unsteady liquid flow in a tapered pipe), Bull. J.S.M.E., 1974, 17(111),
1165--1171.
-
[66]
-
Weston, D. E., The theory
of propagation of plane sound waves in tubes, Proc. Phys. Soc., Lond.,
1953, 66B, Pt. 8, 695-709.
-
[67]
-
Winterbauer, W. L., The
determination of periodic pulsating flow in complex piping systems by the
impedance method, PhD Thesis, 1968, University of Illinois, USA.
-
[68]
-
Witzig, K., Uber erzwungene
Wellenbewegungen zaher inkompressibler Flussigikeiten in Elastischen Rohren,
Inaug. Diss. Bern, (Berne: Wyss), 1914.
-
[69]
-
Wood, D. J. and Kao, T.
Y., Evaluation of quasi-steady approximation for viscous effects in unsteady
liquid pipe flow, Symposium on unsteady flow, 1968, paper 68-FE-33 (ASME,
New York).
-
[70]
-
Yamaguchi, K. and Ichikawa,
T., Studies on oil hammer and transient response in oil pipeline, Bull.
J.S.M.E., 1972, 15(88), 1197-1214.
-
[71]
-
Yamaguchi, K, Ichikawa,
T. and Suzuki, S., The transient characteristics of oil pipelines with
column separation, Bull. J.S.M.E., 1977, 20(143), 630-637.
-
[72]
-
Yellin, L. L., Laminar-turbulent
transition process on pulsatile flow, Circ. Res., 1966, 19, 791-804.
-
[73]
-
Zielke, W., Frequency
dependent friction in transient pipe flow, Trans. ASME, J. Basic Engng,
1968, 90, 109-115.
-
[74]
Ham, A. A.,On the Dynamics of Hydrauic Lines supplying Servosystems,
PhD Thesis, 1982, Technische Hogeschool Delft.
-
-
