000 01822nab a2200193 4500
005 20260520001759.0
008 260224s2010 xxu
245 0 0 _aDrillstring vibration analysis using differential quadrature method
260 _a
_b
_cfeb. 2010
270 _a17/06/2010 ; 17/06/2010
300 _a8 p. ; 235-242
520 _aTranscripción del resumen del autor. In this study, the differential quadrature method (DQM) is applied to analyze the drillstring vibrations in a near vertical hole. First, a nonlinear static analysis is performed to find the effective length of the string where it rests on the borehole wall. The exact form of the beam curvature is used to formulate the string. To model the contact between different parts of the drillstring and the borehole wall, the formation is modeled by a series of springs placed through its length. Then the DQM is applied to the nonlinear differential equations of drillstring sections and those defining the edge and interface boundary conditions. The Newton–Raphson algorithm is used to solve the system of nonlinear equations. Next a free vibration analysis is carried out to determine the natural frequencies of the drillstring. Using effective length derived from static analysis, free vibration analysis is performed to find the lateral natural frequencies of the drillstring, while the full length of the string is used to compute its axial and torsional natural frequencies. The numerical results obtained from a series of case studies confirm the efficiency and accuracy of the method in dealing with drillstring vibration problems.
581 _a3-4
773 0 _tJournal of Petroleum Science & Engineering
_g70
942 _cARTICULO
100 1 _aHakimi, H.
_942936
100 1 _aMoradi, S.
_942937
999 _c171159
_d171159