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Preliminary results of the spilling effects on the oscillation of a pipe with compressible fluid inside 被引量:1

Preliminary results of the spilling effects on the oscillation of a pipe with compressible fluid inside
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摘要 It is known to all, the spilling of pipeline may cause serious problems, especially when the pipe conveying petroleum, natural gas or other toxic substance. There are countless accidents during past century. Once the spilling occurs, the vibration of the pipe would aggravate spill situation and even result in crack of the pipe. The consequence will be more severe when the fluid inside is compressible. To prevent the detriment of the spilling model is developed by assuming the leakages as orifices or nozzles and a 2-D vertical simply supported pipe is selected to analyze the phenomena of the oscillation. Combining these two models, the oscillation model for the pipe with leakage is set up and the spilling effect is analyzed by numerical method. The amplitude of the pipe oscillation and the normal stress enlarge as the internal velocity increased, while the shear stress changes very little. It is known to all, the spilling of pipeline may cause serious problems, especially when the pipe conveying petroleum, natural gas or other toxic substance. There are countless accidents during past century. Once the spilling occurs, the vibration of the pipe would aggravate spill situation and even result in crack of the pipe. The consequence will be more severe when the fluid inside is compressible. To prevent the detriment of the spilling model is developed by assuming the leakages as orifices or nozzles and a 2-D vertical simply supported pipe is selected to analyze the phenomena of the oscillation. Combining these two models, the oscillation model for the pipe with leakage is set up and the spilling effect is analyzed by numerical method. The amplitude of the pipe oscillation and the normal stress enlarge as the internal velocity increased, while the shear stress changes very little.
出处 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第1期52-57,共6页 力学快报(英文版)
基金 the support of Thousand Talents Program the National Natural Science Foundation of China(51479114) special fund for Marine Renewable Energy Project(GHME2014ZC01)
关键词 Fluid-structure interaction Compressible fluid Spilling effect Pipe oscillation Fluid-structure interaction Compressible fluid Spilling effect Pipe oscillation
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