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作 者:LIU Xiu-shan LI Bo YUE Yu-quan
机构地区:[1]Petroleum Drilling Research Institute, Exploration and Production Research Institute of Sinopec Corp., Dezhou 253005, China [2]Technical Department, Tianjin Branch of CNOOC Ltd., Tianjin 300452, China [3]Jinzhou Oil Production Plant, Liaohe Oilfield Branch of PetroChina, Linghai 121209, China
出 处:《Journal of Hydrodynamics》2007年第2期236-240,共5页水动力学研究与进展B辑(英文版)
基 金:Project supported by the National High Technology Research and Development Program of China (863 Program, Grant No. 820-Q-04).
摘 要:In oil and gas industry, mud-pulse telemetry has been widely used to obtain directional data, drilling parameters, formation evaluation data and safety data, etc. Generally, the drilling mud in most current models was considered to be a single-phase fluid through which the mud pulses travel, despite the fact that the drilling mud is composed of two or more phases. In this article, a multiphase flow formula was proposed to calculate the mud-pulse velocity as mud solids and free-gas content change, and a mathematical model was put forward to simulate the dynamic-transmission behavior of the mud-pressure pulse or waves. Compared to conventional methods, the present model provides more accurate mud-pulse attenuation, and the dynamic-transmission behavior of drilling-mud pulses along well bores can also be easily examined. The model is valuable in improving the existing mud-pulse systems and developing new drilling-mud pulse systems.In oil and gas industry, mud-pulse telemetry has been widely used to obtain directional data, drilling parameters, formation evaluation data and safety data, etc. Generally, the drilling mud in most current models was considered to be a single-phase fluid through which the mud pulses travel, despite the fact that the drilling mud is composed of two or more phases. In this article, a multiphase flow formula was proposed to calculate the mud-pulse velocity as mud solids and free-gas content change, and a mathematical model was put forward to simulate the dynamic-transmission behavior of the mud-pressure pulse or waves. Compared to conventional methods, the present model provides more accurate mud-pulse attenuation, and the dynamic-transmission behavior of drilling-mud pulses along well bores can also be easily examined. The model is valuable in improving the existing mud-pulse systems and developing new drilling-mud pulse systems.
关 键 词:measurement-while-drilling (MWD) closed-loop drilling multiphase flow numerical simulation
分 类 号:TE252.2[石油与天然气工程—油气井工程] TE254
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