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基于耦合沉积动力学模拟与多点地质统计学方法的河口湾储层三维建模
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作者 唐佳凡 唐明明 +4 位作者 卢双舫 刘雪萍 张克鑫 何涛华 韩迪 《地球科学》 EI CAS CSCD 北大核心 2024年第1期174-188,共15页
为提高潮控河口湾储层中少井区三维建模精度,以南美Oriente盆地J油田M1层为研究对象,采用沉积动力学模拟与多点统计学建模方法,设定地形坡折高度、潮汐幅度,河口流速、沉积物粒径等参数建立了研究区三维沉积模型.结合M1层储层特征将沉... 为提高潮控河口湾储层中少井区三维建模精度,以南美Oriente盆地J油田M1层为研究对象,采用沉积动力学模拟与多点统计学建模方法,设定地形坡折高度、潮汐幅度,河口流速、沉积物粒径等参数建立了研究区三维沉积模型.结合M1层储层特征将沉积模拟结果转换为三维训练模板,联合井上测井数据,使用多点地质统计学方法构建沉积动力学模拟约束下的潮控河口湾储层三维精细地质模型.结果表明在沉积动力学建立的三维训练模板约束下,模型中取心井结果与岩心拟合程度高,验证井与井上测井数据相对误差为7.6%,高于序贯高斯模拟方法模拟的精度.在潮控河口湾储层中,通过沉积动力学建立三维训练模板约束储层模型,能够在少井区有效提高模型精度,并得到了验证井交叉验证的结果,这将为潮控河口湾含油储层的勘探与开发提供指导. 展开更多
关键词 河口湾 沉积动力学模拟 多点地质统计学 三维建模 Oriente盆地 石油地质
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Numerical simulation of particle deposition in obstructive human airways
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作者 欧翠云 邓启红 刘蔚巍 《Journal of Central South University》 SCIE EI CAS 2012年第3期609-614,共6页
To investigate airflow pattern and its impact on particle deposition, finite-volume based computational fluid dynamics (CFD) simulations were conducted in the diseased triple-bifitrcation airways. Computations were ... To investigate airflow pattern and its impact on particle deposition, finite-volume based computational fluid dynamics (CFD) simulations were conducted in the diseased triple-bifitrcation airways. Computations were carried out for twenty Reynolds numbers ranging from 100 to 2 000 in the step of 100. Particles in the size range of 1-10 μm were conducted. Two particle deposition mechanisms (gravitational sedimentation and inertial impaction) were considered. The results indicate that there are strong relationship between airflow structures and particle deposition patterns. Deposition efficiency is different for different particles in the whole range of the respiratory rates. Particles in different sizes can deposit at different sites. Smaller particles can be uniformly deposited at the inside wall of the considered model. Larger particles can be mainly deposited in the proximal bifurcations. Deposition fraction varies a lot for different inlet Reynolds numbers. For lower Reynolds numbers, deposition fraction is relatively small and varies a little with varying the diameters. For Reynolds number to target the aerosols at the specific site. higher Reynolds numbers, there is a most efficient diameter for each 展开更多
关键词 diseased airway inhalable particle airflow pattern particle deposition
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