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[1]王友春.东海超深大位移小尾管井TCP射孔技术[J].油气井测试,2020,29(04):68.[doi:10.19680/j.cnki.1004-4388.2020.04.012]
WANG Youchun. TCP perforation technology for ultradeep wells with large extension and small liners in the East China Sea[J].Well Testing,2020,29(01):68.[doi:10.19680/j.cnki.1004-4388.2020.04.012]
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