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Injection Scheme Optimization of Foam Profile Control on Block S103 被引量:1
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作者 Hongjun Yin Chuan Liu Meinan Wang 《Engineering(科研)》 2014年第1期7-11,共5页
Facing problems with oil production decreasing quickly and water content increasing gradually in S103 well area, the Foam Profile Control was studied on the basis of its confirmed agent formula. The facies-controlled ... Facing problems with oil production decreasing quickly and water content increasing gradually in S103 well area, the Foam Profile Control was studied on the basis of its confirmed agent formula. The facies-controlled geological model of S103 well area was generated using random model based on Petrel software and using numerical simulation based on CMG software. Gas liquid alternating injection pattern was optimized as the optimal solution through the simulation optimization. Two months are optimized as the optimal solution through the simulation optimization. The cumulative oil production is 0.933 × 107 kg which is higher than the value of subsequent water flooding and the other three. Finally, it reaches the goals of slowing down the production decline and controlling the water rising. 展开更多
关键词 Foam PROFILE Control NUMERICAL Simulation INJECTION PATTERN INJECTION CYCLE
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Analysis for pressure transient of coalbed methane reservoir based on Laplace transform finite difference method 被引量:1
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作者 Lei Wang Hongjun Yin +2 位作者 Xiaoshuang Yang Chuncheng Yang Jing Fu 《Petroleum》 2015年第3期231-236,共6页
Based on fractal geometry,fractal medium of coalbed methane mathematical model is established by Langmuir isotherm adsorption formula,Fick's diffusion law,Laplace transform formula,considering the well bore storag... Based on fractal geometry,fractal medium of coalbed methane mathematical model is established by Langmuir isotherm adsorption formula,Fick's diffusion law,Laplace transform formula,considering the well bore storage effect and skin effect.The Laplace transform finite difference method is used to solve the mathematical model.With Stehfest numerical inversion,the distribution of dimensionless well bore flowing pressure and its derivative was obtained in real space.According to compare with the results from the analytical method,the result from Laplace transform finite difference method turns out to be accurate.The influence factors are analyzed,including fractal dimension,fractal index,skin factor,well bore storage coefficient,energy storage ratio,interporosity flow coefficient and the adsorption factor.The calculating error of Laplace transform difference method is small.Laplace transform difference method has advantages in well-test application since any moment simulation does not rely on other moment results and space grid. 展开更多
关键词 Coalbed methane Pressure performance Fractal medium Laplace transform finite difference method
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