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Study on fault-controlled hydrocarbon migration and accumulation process and models in Zhu I Depression 被引量:2
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作者 Wenqi Zhu Keqiang Wu +2 位作者 Ling Ke Kai Chen Zhifeng Liu 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2021年第2期107-113,共7页
Through the analysis of the faults and their internal structure in Zhu I Depression,it is found that the internal structure of the late fault is obviously segmented vertically.It develops unitary structure(simple faul... Through the analysis of the faults and their internal structure in Zhu I Depression,it is found that the internal structure of the late fault is obviously segmented vertically.It develops unitary structure(simple fault plane)in shallow layers,binary structure(induced fracture zone in hanging wall and sliding fracture zone in footwall)in middle,layers and ternary structure(induced fracture zone in hanging wall and sliding fracture zone in middle,and induced fracture zone in footwall)in deep layers.Because the induced fracture zone is a high porosity and permeability zone,and the sliding fracture zone is a low porosity and ultra-low permeability zone,the late fault in middle layers has the character of"transporting while sealing".The late fault can transport hydrocarbon by its induced fracture zone in the side of the hanging wall and seal hydrocarbon by its sliding fracture zone in the side of the footwall.In deep layers,the late fault has the character of"dual-transportation",induced fracture zones in both sides of hanging wall and footwall can transport hydrocarbon.The early fault that only developed in the deep layers is presumed to be unitary structure,which plays a completely sealing role in the process of hydrocarbon migration and accumulation due to inactivity during the hydrocarbon filling period.Controlled by hydrocarbon source,early/late faults,sand bodies and traps,two reservoir-forming models of"inverted L"and"stereo-spiral"can be proposed in middle layers,while two reservoir-forming models of"cross fault"and"lateral fault sealing"are developed in the deep layers of Zhu I Depression. 展开更多
关键词 fault structure transport/sealing migration and accumulation process reservoir-forming model Zhu I Depression
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Mechanism of Salt Migration Driven by Tectonic Processes:Insights from Physical and Numerical Modeling 被引量:2
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作者 YIN Hongwei ZHENG Mianping +2 位作者 ZHANG Zhen WU Zhenyun WANG Xingyuan 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第S1期273-274,共2页
1 Introduction Physical and numerical models are constructed to investigate the evolution and mechanism of salt migration driven by tectonic processes.In recent years,we have designed and ran series of models to simul... 1 Introduction Physical and numerical models are constructed to investigate the evolution and mechanism of salt migration driven by tectonic processes.In recent years,we have designed and ran series of models to simulate salt 展开更多
关键词 In Mechanism of Salt migration Driven by Tectonic processes
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Geomorphology Processes of Channel Planform Migration on Meandering Rivers 被引量:3
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作者 LIN Zhipeng SHAN Jingfu CHEN Le 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期134-135,共2页
1 Introduction Morphological analysis on the planform migration structure of meandering river is an important basis for the reconstruction of evolution of paleochannel.Besides,it is a significant method for restoratio... 1 Introduction Morphological analysis on the planform migration structure of meandering river is an important basis for the reconstruction of evolution of paleochannel.Besides,it is a significant method for restoration of rivers through the 展开更多
关键词 Geomorphology processes of Channel Planform migration on Meandering Rivers
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Migration process of ammonium ion in saturated silty sand and sandy loam
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《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1997年第4期29-34,共6页
MigrationprocesofammoniumioninsaturatedsiltysandandsandyloamZhuWanpeng,YangZhihua,JiangZhanpengDepartmentofE... MigrationprocesofammoniumioninsaturatedsiltysandandsandyloamZhuWanpeng,YangZhihua,JiangZhanpengDepartmentofEnvironmentalEngin... 展开更多
关键词 migration process of ammonium ion in saturated silty sand and sandy loam
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Laboratory Simulation of the Formation Process of Surface Geochemical Anomalies Applied to Hydrocarbon Exploration 被引量:2
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作者 WANG Guojian TANG Yuping +3 位作者 CHENG Tongjin TANG Junhong FAN Ming LU Li 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第6期2149-2162,共14页
The formation mechanisms and processes of geochemical anomalies used as proxies in surface geochemistry exploration (SGE) have not been well understood. Previous studies cannot realize 3D measurement of microseeping... The formation mechanisms and processes of geochemical anomalies used as proxies in surface geochemistry exploration (SGE) have not been well understood. Previous studies cannot realize 3D measurement of microseeping hydrocarbons from reservoirs to the surface, which made it difficult to understand the features and pathways of deep hydrocarbon microseepages. Understanding the processes of hydrocarbon microseepages will contribute to the acceptance and effectiveness of surface geochemistry. Based on a simplified geological model of hydrocarbon microseepages, including hydrocarbon reservoir, direct caprock, overlying strata and Quaternary sediments, this work established a 3D experimental system to simulate the mechanisms and processes of deep hydrocarbon microseepes extending to the surface. The dispersive halos of microseeping hydrocarbons in the subsurface were adequately described by using this 3D experimental system. Results indicate that different migration patterns of hydrocarbons above the point gas source within the simulated caprock and overlying strata can be reflected by the ratio of i-butane to n-butane (i-C4/n-C4), which follow diffusion and infiltration (buoyancy) mechanisms. This is not the case for vertical measurement lines far from the point gas source. A vertical gas flow in the form of a plume was found during hydrocarbon microseepage. For sampling methods, the high-density grid sampling is favorable for delineating prospecting targets. Hydrocarbon infiltration or buoyancy flow occurs in the zones of infiltration clusters, coupling with a diffusion mechanism at the top of the water table and forming surface geochemical anomalies. These results are significant in understanding hydrocarbon microseepage and interpreting SGE data. 展开更多
关键词 hydrocarbon microseepage surface geochemical anomaly 3D measurement laboratory simulation migration mechanisms and processes
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