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   severe wellbore instability in gachsaran formation necessitating casing while drilling and continuous circulation system  
   
نویسنده ashena rahman ,roohi abbas ,ailie serasa nur
منبع كنفرانس بين المللي دوسالانه نفت، گاز و پتروشيمي - 1399 - دوره : 3 - سومین دوره کنفرانس بین المللی دوسالانه نفت، گاز و پتروشیمی - کد همایش: 99200-29885 - صفحه:1 -22
چکیده    Most of drilling hole problems are attributed to wellbore stability issues which adversely cause excessive lost time and cost millions of dollars. the past drilling experiences in kupal oilfield showed excessive mud losses, kick flows, tight holes and pipe stuck leading to repeated reaming, fishing and sidetracking. most of the drilling associated problems in this field occurred during drilling the 12 ¼-in hole, which is across the non-reservoir gachsaran formation (consisting of anhydrite, gypsum, and marl with thin limestone layers). mainly due to the lack of required formation evaluation data, no geomechanical studies of this formation have been conducted to date. in this work, first, we constructed a geomechanical model to investigate the root of the problems. this is a pioneer wellbore stability work for such a complex lithology formation which included finding the equations best-matching with core data and field observations. finally, to overcome the field challenges and hole problems, the study proposes some field remedial actions.the results of the geomechanical modeling show that the pore pressure, shear and tensile failure gradients are greatly-variable with the safe mud weight window becoming excessively narrow at some intervals. this accounts for the encountered wellbore stability issues as managing the mud weight in this situations requires several casing strings. to mitigate the extent of the problem, this study proposes the application of innovative drilling technologies including casing while drilling (cwd) to eliminate the casing running time with potential reduction in drilling time, and continuous circulation system (ccs) to prevent cuttings settling and kick flows during connections. these technologies are capable of elimination of the geomechanical part of the drilling delay (30% of the average 77 drilling days) per well.
کلیدواژه optimum drilling ,geomechanical studies ,geomechanical model ,continuous circulation system ,wellbore instability
آدرس asia pacific university of technology and innovation, malaysia, national iranian drilling company, asia pacific university of technology and innovation, malaysia
 
     
   
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