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油藏精细描述及建模--以西非刚果盆地Plutonio油田为例

Biography第8-10页
摘要第10-12页
ABSTRACT第12-13页
CHAPTER ONE:INTRODUCTION第23-36页
    1.1 OBJECTIVE第23页
    1.2 MOTIVATIONS AND PROBLEMS第23-24页
    1.3 GEOLOGICAL SETTING,SOURCE ROCKS AND TECTONIC HISTORY第24-32页
        1.3.1 Plutonio Field第27-28页
        1.3.2. Stratigrahy and sedimentology第28-32页
    1.4 TERMINOLOGIES FOR MULTIDISCIPLINARY COMMUNICATION第32-33页
    1.5 CHAPTER DESCRIPTION第33-35页
    1.6 PRIMARY CONTRIBUTIONS OF THIS THESIS第35-36页
CHAPTER TWO:LITERATURE REVIEW第36-52页
    2.1 INTRODUCTION第36-37页
    2.2 GEO-STATISTICAL MODELING OF RESERVOIR PROPERTIES第37-40页
    2.3 REFLECTION SEISMOLOGY AND EXTENDED ELASTIC IMPEDANCE INVERSION第40-49页
        2.3.1. Inversion Algorithm第40-43页
        2.3.2 Elastic Impedance第43-44页
        2.3.3. Extended Elastic Impedance第44-49页
    2.4 ROCK PHYSICS MODELING OF RESERVOIR PROPERTIES PREDICTION第49-52页
        2.4.1 Rock Physics Models第49-50页
        2.4.2 Reservoir Management Benefits第50-52页
CHAPTER THREE:A GEO-STATISTICS BASED RESERVOIR PROPERTIESCHAR ACTERIZATION AND MODELING第52-78页
    3.1 CHAPTER OBJECTIVES第52-53页
    3.2 PETROPHYSICAL ANALYSIS第53-59页
        3.2.1 Well log normalization第53-54页
        3.2.2. Calculation of shale content第54页
        3.2.3. Reservoir Porosity Calculation第54-56页
        3.2.4. Water Saturation Calculation第56-57页
        3.2.5. Permeability Determination第57页
        3.2.6. Cut-off Determinations第57-59页
    3.3 3D RESERVOIR MODELING第59-78页
        3.3.1 3D Modeling Methodology第59-60页
        3.3.2 3D Modeling Result and Discussion第60-78页
CHAPTER FOUR:APPLICATION OF EXTENDED ELASTIC IMPEDANCE INRESERVOIR PROPERTIES PREDICTION第78-98页
    4.1 CHAPTER OBJECTIVES第78-79页
    4.2 MATERIALS AND METHODS第79-80页
    4.3 DETERMINATION OF OPTIMUN EEI ANGLES第80-82页
        4.3.1. Well log Data Gathering and Quality Check第80-81页
        4.3.2. EEI angles computation and correlation第81-82页
    4.4 SEISMIC INVERSION第82-90页
        4.4.1. Seismic data QC and Conditioning第82-84页
        4.4.2. Statistical/quantitative wavelet extraction and synthetic seismogram第84-85页
        4.4.3. Low frequency modeling第85-87页
        4.4.4. Seismic inversion result and QC第87-90页
    4.5. COMPUTATION OF EQUIVALENT EEI VOLUME THROUGH第90-92页
    4.6 TRANSFORMATION OF EEI VOLUME INTO QUANTITATIVE PETROPHYSICAL PROPERTY第92页
    4.7 FACIES DISTRIBUTION第92-98页
CHAPTER FIVE:AN INVERSION OF RESERVOIR PROPERTIES BASED ON ACONCURRENT MODELING APPROACH第98-117页
    5.1 CHAPTER OBJECTIVES第98-101页
    5.2 MATERIALS AND METHODS第101-105页
        5.2.1 Petrophysical analysis第101页
        5.2.2 Rock physics Models第101-104页
        5.2.3 Inversion第104-105页
    5.3 CASE STUDY APPLICATION(WELL LOG AND SEISMIC)第105-117页
        5.3.1 Petrophysical analysis第105-106页
        5.3.2 Rock physics modeling and diagnostics第106-109页
        5.3.3 Reservoir delineation by combining I_p and v第109-110页
        5.3.4 Petrophysical link between Φ and C第110-114页
        5.3.5 Inversion第114-117页
CHAPTER SIX:CONCLUSIONS第117-119页
ACKNOWLEDGEMENT第119-120页
REFERENCES第120-128页

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