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作 者:JIANG Chuanlong YAN Tingjun ZHANG Yang SUN Tengfei CHEN Zhongshuai SUN Haoyu
机构地区:[1]College of Mechanical and Electrical Engineering,Beijing University of Chemical Technology,Beijing 100029,China [2]Drilling Technology Research Institute of Shengli Oilfield Service Corporation,Sinopec,Dongying 257000,China
出 处:《Petroleum Exploration and Development》2022年第2期458-467,共10页石油勘探与开发(英文版)
基 金:Supported by the Sinopec Major Science and Technology Project (JPE19007)。
摘 要:A design idea of fidelity sampling cylinder while drilling based on surface nitrogen precharging and supplemented by downhole pressurization was proposed, and the working mode and optimization method of sampling parameters were discussed. The nitrogen chamber in the sampling cylinder functions as an energy storage air cushion, which can supplement the pressure loss caused by temperature change in the sampling process to some extent. The downhole pressurization is to press the sample into the sample chamber as soon as possible, and further increase the pressure of sample to make up for the pressure that the nitrogen chamber cannot provide. Through the analysis of working mode of the sampling fidelity cylinder, the non-ideal gas state equation was used to deduce and calculate the optimal values of fidelity parameters such as pre-charged nitrogen pressure, downhole pressurization amount and sampling volume according to whether the bubble point pressure of the sampling fluid was known and on-site emergency sampling situation. Besides, the influences of ground temperature on fidelity parameters were analyzed, and corresponding correction methods were put forward. The research shows that the fidelity sampling cylinder while drilling can effectively improve the fidelity of the sample. When the formation fluid sample reaches the surface, it can basically ensure that the sample does not change in physical phase state and keeps the same chemical components in the underground formation.
关 键 词:sampling while drilling formation fluid sample fidelity bubble point pressure nitrogen pre-charge downhole pressurization parameter optimization
分 类 号:TE271[石油与天然气工程—油气井工程]
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