참고문헌
- Ahmed, S.S. (2008), "Axially symmetric vibrations of fluid-filled poroelastic circular cylindrical shells", J. Sound Vib., 318, 389-405. https://doi.org/10.1016/j.jsv.2008.04.012.
- Akbarov, S.D. (2015), Dynamics of Pre-Strained Bi-Material Elastic Systems: Linearized Three-Dimensional Approach, Springer, Heidelberg, New York, USA.
- Akbarov, S.D. (2018), "Forced vibration of the hydro-viscoelastic and-elastic systems consisting of the viscoelastic or elastic plate, compressible viscous fluid and rigid wall: A review", Appl. Comput. Math., 17, 221-245.
- Akbarov, S.D. and Bagirov, E.T. (2019), "Axisymmetric longitudinal wave dispersion in a bi-layered circular cylinder with inhomogeneous initial stresses", J. Sound Vib., 450, 1-27. https://doi.org/10.1016/j.jsv.2019.03.003.
- Akbarov, S.D. and Huseynova, T.V. (2019), "Forced vibration of the hydro-elastic system consisting of the orthotropic plate, compressible viscous fluid and rigid wall", Couple. Syst. Mech., 8, 199-218. https://doi.org/10.12989/csm.2019.8.3.199.
- Akbarov, S.D. and Huseynova, T.V. (2020), "Fluid flow profile in the "orthotropic plate+compressible viscous fluid+rigid wall" system under the action of the moving load on the plate", Couple. Syst. Mech., 9, 289-309. https://doi.org/10.12989/csm.2020.9.3.289.
- Akbarov, S.D., Sevdimaliyev, Y.M. and Valiyev, G.J. (2021), "Mathematical modeling of the dynamics of a hydroelastic system-A hollow cylinder with inhomogeneous initial stresses and compressible fluid", Math. Meth. Appl. Sci., 44(9), 7858-7872. https://doi.org/10.1002/mma.7329.
- Atabek, H.B. (1968), "Wave propagation through a viscous fluid contained in a tethered initially stressed, orthotropic elastic tube", Biophys. J., 8, 626-649. https://doi.org/10.1016/S0006-3495(68)86512-9
- Atabek, H.B. and Lew, H.S. (1966), "Wave propagation through a viscous incompressible fluid contained in an initially stressed elastic tube", Biophys. J., 6, 481-503. https://doi.org/10.1016/S0006-3495(66)86671-7
- Bagno, A.M. and Guz, A.N. (1982), "Wave propagation in a previously stressed, incompressible cylinder containing a viscous compressible liquid", Mech. Compos. Mater., 2, 349-355. https://doi.org/10.1007/BF00604851.
- Bagno, A.M. and Guz, A.N. (1997), "Elastic waves in prestressed bodies interacting with fluid (Survey)", Int. Appl. Mech., 33, 435-465. https://doi.org/10.1007/BF02700652.
- Bagno, A.M. and Guz, A.N. (2016), "Effect of prestresses on the dispersion of waves in a system consisting of a viscous liquid layer and a compressible elastic layer", Int. Appl. Mech., 52, 333-341. https://doi.org/10.1007/s10778-016-0756-4.
- Bagno, A.M., Guz, A.N. and Efremov, V.I. (1994), "Effect of initial strains on the propagation of waves in an incompressible cylinder located in an ideal fluid", Int. Appl. Mech., 30, 583-585. https://doi.org/10.1007/BF00847229.
- Bochkarev, S.A. and Lekomtsev, S. V. (2022), "Natural vibrations and hydroelastic stability of laminated composite circular cylindrical shells", Struct. Eng. Mech., 81(6), 769-780. https://doi.org/10.12989/sem.2022.81.6.769.
- Daricik, F., Canbolat, G. and Koru, M. (2022), "Investigation of a fiber reinforced polymer composite tube by two way coupling fluid-structure interaction", Couple. Syst. Mech., 11(4), 315-333. https://doi.org/10.12989/csm.2022.11.4.315.
- Eringen, A.C. and Suhubi, E.S. (1975), Elastodynamics, Finite Motion, Vol. I; Linear Theory, Vol. II, Academic Press, New York.
- Gao, H., Li, X., Nezhad, A.H. and Behshad, A. (2022), "Numerical simulation of the flow in pipes with numerical models", Struct. Eng. Mech., 81(4), 523-527. https://doi.org/10.12989/sem.2022.81.4.523.
- Guz, A.N. (2004), Elastic Waves in Bodies with Initial (Residual) Stresses, A.C.K. Kiev. (in Russian)
- Guz, A.N. (2009), Dynamics of Compressible Viscous Fluid, Cambridge Scientific Publishers.
- Ha, S.T. and Choi, H.G. (2020), "Investigation on the effect of density ratio on the convergence behavior of partitioned method for fluid-structure interaction simulation", J. Fluid. Struct., 96, 103050. https://doi.org/10.1016/j.jfluidstructs.2020.103050.
- Hadzalic, E., Ibrahimbegovic, A. and Dolarevic, S. (2018), "Fluid-structure interaction system predicting both internal pore pressure and outside hydrodynamic pressure", Couple. Syst. Mech., 7(6), 649-668. https://doi.org/10.12989/csm.2018.7.6.649.
- Kumar, G.M. and Sriram, V. (2020), "Development of a hybrid model based on mesh and meshfree methods and its application to fluid-elastic structure interaction for free surface waves", J. Fluid. Struct., 99, 103159. https://doi.org/10.1016/j.jfluidstructs.2020.103159.
- Lamb, H. (1898), "On the velocity of sound in a tube, as affected by the elasticity of the walls", Manchester Memoirs, 42, 1-16.
- Lin, T.C. and Morgan, G.W. (1956), "Wave propagation through fluid contained in a cylindrical, elastic shell", J. Acoust. Soc. Am., 28, 1165-1176. https://doi.org/10.1121/1.1908583
- Mandal, K.K. and Maity, D. (2015), "2d finite element analysis of rectangular water tank with separator wall using direct coupling", Couple. Syst. Mech., 4(4), 317-336. https://doi.org/10.12989/csm.2013.2.2.127.
- Plona, T.J., Sinha, B.K., Kostek, S. and Chong, S.K. (1992), "Axisymmetric wave propagation in fluid loaded cylindrical shells. II. Theory versus experiment", J. Acoust. Soc. Am., 92, 1144-1155. https://doi.org/10.1121/1.404041.
- Rachev, A.I. (1978), "Propagation of a pulse wave in arteries taking account of prior stresses and muscle activity", Mekh. Polim., 2, 244-252.
- Sandhyarani, B., Rao, J.A. and Reddy, P.M. (2019), "Axially symmetric vibrations of a liquid-filled poroelastic thin cylinder saturated with two immiscible liquids surrounded by a liquid", J. Fluid. Struct., 11, 272-280. https://doi.org/10.22034/JSM.2019.665907.
- Selvamani, R. (2016), "Dispersion analysis in a fluid-filled and immersed transversely isotropic thermoselectro-elastic hollow cylinder", Mech. Mech. Eng., 20, 209-231.
- Sinha, B.K., Plona, T.J., Kostek, S. and Chong, S.-K. (1992), "Axisymmetric wave propagation in fluid loaded cylindrical shells. I: Theory", J. Acoust. Soc. Am., 92(2), 1132-1143. https://doi.org/10.1121/1.404040.
- Timoshenko S. and Goodier, J.N. (1951). Theory of elasticity, McGraw-Hill.
- Watson, G.N. (1966), A Treatise on the Theory of Bessel Functions, 2nd Edition, Cambridge University Press.