“…In this study, the dynamic behavior of pipes conveying gas-liquid two-phase flow is analytically and numerically investigated on the basis of the generalized integral transform technique (GITT), which has been successfully developed in heat and fluid flow applications (Cotta, 1993(Cotta, , 1998Cotta and Mikhailov, 1997) and further applied in solving the dynamic response of axially moving beams (An and Su, 2011), axially moving Timoshenko beams (An and Su, 2014b), axially moving orthotropic plates (An and Su, 2014a), damaged Euler-Bernoulli beams (Matt, 2013a), cantilever beams with an eccentric tip mass (Matt, 2013b), fluidconveying pipes (Gu et al, 2013), the wind-induced vibration of overhead conductors (Matt, 2009) and the vortex-induced vibration of long flexible cylinders (Gu et al, 2012). The most interesting feature in this technique is the automatic and straightforward global error control procedure, which makes it particularly suitable for benchmarking purposes, and the only mild increase in overall computational effort with increasing number of independent variables.…”