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Luo  XiaoRong  Yu  Jian  Zhang  LiuPing  Yang  Yang  Chen  RuiYin  Chen  ZhanKun  Zhou  Bo 《中国科学:地球科学(英文版)》2007,50(2):91-102

Mathematic modeling, established on the basis of physical experiments, is becoming an increasingly important tool in oil and gas migration studies. This technique is based on the observation that hydrocarbon migration tends to take relative narrow pathways. A mathematical model of hydrocarbon migration and accumulation is constructed using the percolation theory. It is then calibrated using physical experimental results, and is tested under a variety of conditions, to understand the applicability of the model in different migration cases. Through modeling, dynamic conditions of large-scale migration pathways within homogeneous formations can be evaluated. Basin-scale hydrocarbon migration pathways and their characteristics are analyzed during the model application to the Chang-8 Member of the Triassic Yanchang Formation in Longdong area of Ordos Basin. In heterogeneous formations, spatial changes in fluid potential determine the direction of secondary migration, and heterogeneity controls the characteristics and geometry of secondary migration pathways.

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Mathematic modeling, established on the basis of physical experiments, is becoming an increasingly important tool in oil and gas migration studies. This technique is based on the observation that hydrocarbon migration tends to take relative narrow pathways. A mathematical model of hydrocarbon migration and accumulation is constructed using the percolation theory. It is then calibrated using physical experimental results, and is tested under a variety of conditions, to understand the applicability of the model in different migration cases. Through modeling, dynamic conditions of large-scale migration pathways within homogeneous formations can be evaluated. Basin-scale hydrocarbon migration pathways and their characteristics are analyzed during the model application to the Chang-8 Member of the Triassic Yanchang Formation in Longdong area of Ordos Basin. In heterogeneous formations, spatial changes in fluid potential determine the direction of secondary migration, and heterogeneity controls the characteristics and geometry of secondary migration pathways.  相似文献   
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肖剑  赵志丹  祝新友  张雄  曾瑞垠  张敏 《岩石学报》2021,37(4):1270-1286
东川式铜矿主要分布在云南省中北部的康滇地区,属于典型的沉积岩型容矿铜矿床,以东川地区的东川铜矿床铜储量最大。东川群是东川式铜矿的主要赋矿围岩,查明东川群物源对于识别沉积作用的源区、沉积构造环境和Cu成矿作用以及对于研究沉积岩型容矿铜矿床的成矿模式具有重要意义。本文对东川地区东川群的因民组、黑山组、青龙山组样品的碎屑锆石进行了LA-ICP-MS U-Pb定年和原位微量元素分析。结果表明,东川群绝大多数碎屑锆石属岩浆锆石,且来自S型花岗岩源区。所有锆石显示了~2.7Ga、~2.5Ga、~2.2Ga、~1.8Ga和~1.5Ga等5个年龄峰值,首次确定青龙山组最大沉积年龄为~1220Ma。东川群含矿地层成岩和成矿物质具有二元特征:地层主体成分来自于毗邻的哥伦比亚造山带的S型花岗岩,而金属Cu应为同一造山带内先期存在的Cu矿床或者富Cu岩石经过剥蚀、搬运和沉积成矿作用富集的。  相似文献   
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Mathematic modeling, established on the basis of physical experiments, is becoming an increasingly important tool in oil and gas migration studies. This technique is based on the observation that hydrocarbon migration tends to take relative narrow pathways. A mathematical model of hydrocarbon migration and accumulation is constructed using the percolation theory. It is then calibrated using physical experimental results, and is tested under a variety of conditions, to understand the applicability of the model in different migration cases. Through modeling, dynamic conditions of large-scale migration pathways within homogeneous formations can be evaluated. Basin-scale hydrocarbon migration pathways and their characteristics are analyzed during the model application to the Chang-8 Member of the Triassic Yanchang Formation in Longdong area of Ordos Basin. In heterogeneous formations, spatial changes in fluid potential determine the direction of secondary migration, and heterogeneity controls the characteristics and geometry of secondary migration pathways.  相似文献   
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