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考虑砂体连通性的三维流管模型和立体波及评价
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作者 蒲保彪 曹仁义 +4 位作者 周晋冲 石坚 周妍 程林松 贾志豪 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第10期3945-3956,共12页
我国致密油藏主要采用注水的方式补充地层能量,然而,砂体的非均质性导致单井见水规律复杂,传统平面流管模型无法准确评价波及系数。为了准确评价波及系数,首先,通过引入连通系数定性表征砂体连通性,综合考虑启动压力梯度与各向异性,建... 我国致密油藏主要采用注水的方式补充地层能量,然而,砂体的非均质性导致单井见水规律复杂,传统平面流管模型无法准确评价波及系数。为了准确评价波及系数,首先,通过引入连通系数定性表征砂体连通性,综合考虑启动压力梯度与各向异性,建立考虑砂体连通性的致密油藏三维流管模型,并采用Python编程求解模型;接着,与商业数值模拟器tNavigator计算结果进行对比,验证本文建立模型的准确性;最后,将模型应用于长庆油田HB油藏,对不同砂体连通性对立体波及系数的影响进行分析,分别针对砂体中等连通和弱连通的井组提出补孔和补孔后重复压裂的调整对策,并预测调整方案的波及系数。研究结果表明:当砂体全部连通时,井组的立体波及系数约为65.80%,考虑了砂体部分连通后,波及系数明显降低;采取补孔措施后,砂体中等连通井组波及系数预计提高18.03%,砂体弱连通井组采用补孔后重复压裂措施,波及系数提高50.01%。该方法可为致密油藏立体波及评价提供理论基础和依据。 展开更多
关键词 致密油藏 砂体连通性 三维流管模型 立体波及 开发调整对策
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Fluid-solid interaction of resistance loss of flexible hose in deep ocean mining 被引量:3
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作者 王志 饶秋华 刘少军 《Journal of Central South University》 SCIE EI CAS 2012年第11期3188-3193,共6页
The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-s... The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-solid interaction by MSC.MARC/MENTAT software.The numerical results show that the resistance losses increase with the increase of mineral content Cv and velocity of internal fluid v and decrease with the increase of elastic modulus E of flexible hose.The buoyancy layout and the velocity of internal fluid have greater impacts on the resistance losses than the elastic modulus of flexible hose.In order to reduce the resistance losses and improve the efficiency of the deep-ocean mining,Cv and v must be restricted in a suitable range (e.g.10%-25% and 2.5-4 m/s).Effective buoyancy layout (such as Scheme C and D) should be adopted and the suitable material of moderate E should be used for the flexible hose in deep-ocean mining. 展开更多
关键词 resistance loss flexible hose fluid-solid interaction deep-ocean mining finite element method
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