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In the light of a growing need for fracture control of rapid crack propagation(RCP)ingas pipelines,a program PFRAC(Pipeline FRacture Analysis Code)has been developed to analysethc various events.In this paper,by using PFRAC for the simulation of axial crack propagation in gaspipelines,a number of dynamic analysis issues rclating to boundary effects for uncracked and crackedpipes are investigated.This indicates that the boundary conditions along the length of the pipe play animportant role for fracture analysis in the pipe.In contrast.the boundary condutions at thc ends of along pipeline have little effect on the dynamic fracture events.
In the light of a growing need for fracture control of rapid crack propagation (RCP) ingas pipelines, a program PFRAC (Pipeline FRacture Analysis Code) has been developed to analyze the various events. In this paper, by using PFRAC for the simulation of axial crack propagation in gaspipelines, a number of dynamic analysis issues rclating to boundary effects for uncracked and crackedpipes are investigated. This indicates that the boundary conditions along the length of the pipe play animportant role for fracture analysis in the pipe. contrast. the boundary condutions at thc ends of along pipeline have little effect on the dynamic fracture events.