000 02527nmc a2200217 4500
005 20260520005825.0
008 260224s xxu
082 _aCD I249 1 0013788
245 0 0 _aVibration assessment of connection to pipeline systems and the relationship between vibration and process conditions
270 _a12/09/06 ; 22/07/2003
300 _a12 p.
500 _aDisponible en CD en formato PDF
520 _aTranscripción del abstract original del autor: Gas pipeline systems incorporate numerous welded small bore connections, which are susceptible to fatigue failure due to vibration excited both through the structure and by pressure fluctuations in the gas. These fatigue failures can result in the release of gas and therefore have significant safety implications. To minimize the probability of such failures occurring, it is essential to have a reliable and rapid means of assessing connections that may be at risk. Methods have been developed based on conventional vibration measurement equipment and most types of fittings can be quickly assessed. Results from field measurements show how simple screening criteria have been developed using established fatigue design methods to identify cases requiring urgent action. Causes of vibration at compressor stations and pressure reduction stations are discussed. In addition, examples of fittings and pipe geometries that are susceptible to failure caused by vibration are identified. A rapid assessment can only provide information about vibration levels that exist at the time of the measurements. There are occasions where this is not adequate as the severity of the vibration amplitude varies in a complex manner with the operating parameters of the process equipment. A thorough understanding of the relationship between these characteristics is therefore a key element of a comprehensive fatigue assessment, and equipment has been specially developed to perform long term, continuous monitoring of vibration at multiple sensor locations for this purpose. This equipment can be set up to log trends and capture detailed information and example results are presented with the aim of identifying appropriate solutions for the avoidance of fatigue failures.
773 _g
942 _cCONGTP
100 1 _aMiles, Toby
_922393
110 2 _aInternational Gas Union, IGU
_913105
111 2 _aWorld Gas Conference (22nd. : 2003 jun 1-5 : Tokyo)
_922029
710 2 _aInternational Gas Union, IGU
_913105
999 _c149751
_d149751