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作 者:Hao Qiu Yi Wu Min Wen Xuesong Xing Zening Hou Nan Ma Zizhen Zhang Rui Zhang
机构地区:[1]CNOOC Research Institute,Ltd.,Beijing,100028,China [2]China University of Petroleum(East China),Qingdao,266580,China
出 处:《Fluid Dynamics & Materials Processing》2023年第3期579-592,共14页流体力学与材料加工(英文)
基 金:This research is financially supported by the National Natural Science Foundation of China(Grant No.52174015);supported by the Program for Changjiang Scholars and Innovative Research Team in University(IRT_14R58).
摘 要:Sand production is a critical issue during the development of offshore oil and gas fields.Certain gas fields(e.g.the AB gas field)have high porosity and high permeability,and with water at the bottom of the reservoir,the risk of sand production greatly increases at high differential pressures.Based on reservoir properties,geological conditions,production requirements,and well logging data,in this study an ultrasonic time difference method,a B index method,and a S index method are used together with a model of rock mass failure(accounting for water influx and pressure depletion)to qualitatively predict sand production.The results show that considered sample gas field has an overall high risk of sand production.The critical differential pressure(CDP)without water influx is in the range of 1.40 to 2.35 MPa,the CDP after water influx is from 0.60 to 1.41MPa.The CDP under pressure depletion is in the range of 1.20 to 1.92 MPa.The differential pressure charts of sand production are plotted,and the safe differential pressure windows with or without water influx are obtained.The model calculation results and the experimental results are consistent with the field production data,which indicates that the implemented prediction method could be taken as a reference for sand production prediction in similar deep water gas fields.
关 键 词:Sand production differential pressure water influx pressure depletion
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