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Modeling of the whole hydrocarbon-generating process of sapropelic source rock 被引量:2
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作者 LI Jian MA Wei +4 位作者 WANG Yifeng WANG Dongliang XIE Zengye LI Zhisheng MA Chenghua 《Petroleum Exploration and Development》 2018年第3期461-471,共11页
Based on experimental data from hydrocarbon generation with a semi-open system, hydrocarbon generation kinetics modeling in gold tube of closed system, high temperature pyrolysis chromatography mass spectrometry exper... Based on experimental data from hydrocarbon generation with a semi-open system, hydrocarbon generation kinetics modeling in gold tube of closed system, high temperature pyrolysis chromatography mass spectrometry experiment with open system and geological data, the characteristics of whole hydrocarbon-generating process, hydrocarbon expulsion efficiency and retained hydrocarbon quantity, origins of natural gas generated in high-over mature stage and cracking temperature of methane homologs were investigated in this study. The sapropelic source rock has a hydrocarbon expulsion efficiency of 30%-60% and 60%-80% in the major oil generation window(with Ro of 0.8%-1.3%) and high maturity stage(with Ro of 1.3%-2.0%) respectively; and the contribution ratio of kerogen degradation gas to oil cracking gas in total generated gas in high maturity stage is about 1:4. The degradation gas of kerogen accounts for 20%, the retained liquid hydrocarbon cracking gas accounts for 13.5%, and the amount of out-reservoir oil cracking gas(including aggregation type and dispersed oil cracking gas) accounts for 66.5%. The lower limit of gas cracking is determined preliminarily. Based on the new understandings, a model of the whole hydrocarbon-generating process of source rock is built. 展开更多
关键词 sapropelic source rock hydrocarbon-generating model hydrocarbon expulsion efficiency experiment of hydrocarbon generation KEROGEN degradation GAS cracking GAS
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Utility of fluid inclusion paleo-temperature in petroleum system modelling:A case study from western offshore,India
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作者 V.Nandakumar S.Shivapriya Silpa Thankan 《Energy Geoscience》 EI 2024年第2期101-119,共19页
The paleo-temperature(Th)data from fluid inclusions are utilized for thermal history modelling using PetroMod software.Generally,bottom hole temperature(BHT)and vitrinite reflectance(Ro)measurements are widely used in... The paleo-temperature(Th)data from fluid inclusions are utilized for thermal history modelling using PetroMod software.Generally,bottom hole temperature(BHT)and vitrinite reflectance(Ro)measurements are widely used in petroleum system modelling(PSM)in the oil industry for calibration purposes.Th representing the minimum temperature of fluid entrapment estimated from fluid-inclusion study provides extra support to build the thermal models for PSM.Fluid inclusion parameters along with Rock-Eval pyrolysis analysis have been used to predict the maturity of oil in terms of API gravity as well as the maturity of source rocks respectively.Two exploratory wells RV-1(Mumbai Offshore Basin)and KK4C-A-1(Kerala-Konkan Offshore Basin),India were examined and the T_(h)from most of the fluid inclusions of wells RV-1 and KK4C-A-1 fell in the oil window range of 60-140℃suggesting thermal conditions favourable for oil generation in both of the wells.T_(h)of coeval aqueous inclusions along with the Hydrocarbon Fluid inclusions(HCFIs)was used to calibrate PSM.Vital parameters show that source rocks of well RV-1 are mature and that of well KK4C-A-1 are immature.Two sets of PSM are created in terms of generation and expulsion for the dry wells RV-1 and KK4C-A-1 and calibrated each well using fluid inclusion Th and BHT.From the fluid inclusion analysis method,it is evident that hydrocarbon generation happened in both wells and the paleo-temperature indicates that the formations of both wells were subjected to temperatures in the oil window range,even though it was designated as dry wells in the present scenario.The present study highlights the application of fluid inclusion paleo-temperature(Th)during calibration instead of commonly used methods.We could obtain desirable and accurate data output from PSM using T_(h) calibration. 展开更多
关键词 Paleo-temperature(T_(h)) hydrocarbon fluid inclusion Petroleum system modelling Petroleum generation and expulsion Western offshore basin
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基于存滞系数的页岩气资源评价方法 被引量:5
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作者 宋振响 邱岐 +3 位作者 赵琳洁 王保华 马中良 杨国桥 《天然气工业》 EI CAS CSCD 北大核心 2020年第10期12-19,共8页
为了科学合理地评估页岩气资源量,系统分析了目前国内外常用的页岩气资源评价方法及所存在的主要问题,从泥页岩生烃—排烃—滞留烃演化过程出发,提出了页岩气存滞系数的概念和获取方法,并通过典型井解剖分析了页岩气存滞系数的影响因素... 为了科学合理地评估页岩气资源量,系统分析了目前国内外常用的页岩气资源评价方法及所存在的主要问题,从泥页岩生烃—排烃—滞留烃演化过程出发,提出了页岩气存滞系数的概念和获取方法,并通过典型井解剖分析了页岩气存滞系数的影响因素,建立了基于页岩气存滞系数和盆地模拟的页岩气资源量计算新方法。研究结果表明:①页岩气资源评价方法可划分分为静态法、动态法和综合法3大类,目前国内常用的静态法中的体积法和类比法存在着无法确定页岩气资源空间位置分布的问题,该问题可以通过成因法计算页岩气资源量的技术思路加以解决;②基于泥页岩生烃—排烃—滞留烃演化过程,提出页岩气存滞系数的概念,页岩气存滞系数是成因法计算页岩气资源量中最关键的参数,可以在单井泥页岩精细生烃—排烃—滞留烃模拟计算的基础上,结合实测含气量数据反算获得;③页岩气存滞系数主要受泥页岩生烃条件、储集性能和保存条件的影响。结论认为,基于存滞系数的页岩气资源量计算方法具有较好的应用前景,可为页岩气选区评价、有利区优选和勘探部署编制等提供依据。 展开更多
关键词 泥页岩 生烃—排烃—滞留烃模式 存滞系数 影响因素 页岩气 资源量计算新方法
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Exploration progress of the Paleogene in Jiyang Depression,Bohai Bay Basin 被引量:1
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作者 Lichi Ma Mingshui Song +2 位作者 Yongshi Wang Yanguang Wang Huimin Liu 《Energy Geoscience》 2023年第1期42-50,共9页
With increased exploration in the faulted basins of eastern China,petroleum exploration in this region has been challenged by unclear remaining petroleum resources distribution,complex reservoir and hydrocarbon enrich... With increased exploration in the faulted basins of eastern China,petroleum exploration in this region has been challenged by unclear remaining petroleum resources distribution,complex reservoir and hydrocarbon enrichment patterns,and lacking of suitable exploration techniques.Aiming at resolving these problems,studies on source rocks,reservoirs,hydrocarbon accumulation and geophysical prospection were carried out by laboratory analysis,reservoir anatomy,and seismic analysis.A highlyefficient hydrocarbon generation/expulsion model of source rocks in saline environment was established,which aided in the discovery of a new set of source rocks in the Jiyang Depression.This study also reveals the formation process of high-quality reservoir by alternating acid and alkaline fluids during deposition and diagenesis,and pattern of secondary pores development in deep clastic rocks.Through the fine anatomy of the oil reservoirs,an orderly distribution pattern of the oil reservoirs is established,and the potential exploration targets in the undrilled area are identified.In addition,single-point highdensity seismic acquisition and high-resolution imaging technologies are developed,enabling fine and efficient exploration in areas with high exploration maturity.The research result plays a leading and demonstrative role in the fine and efficient exploration of faulted basins in eastern China. 展开更多
关键词 hydrocarbon generation/expulsion model Saline environment Acid and alkaline fluids hydrocarbon accumulation model Faulted basin
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Petroleum geological dynamics of Lower Paleozoic in the Ordos Basin, northwest China 被引量:3
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作者 叶加仁 赵鹏大 陆明德 《Science China Earth Sciences》 SCIE EI CAS 2000年第4期401-411,共11页
Taking the hydrocarbon source rocks of Ordovician, Lower Paleozoic in the Ordos Basin as the main research object, the characteristics of petroleum geological dynamics about geohistory, geothermal history, hydrocarbon... Taking the hydrocarbon source rocks of Ordovician, Lower Paleozoic in the Ordos Basin as the main research object, the characteristics of petroleum geological dynamics about geohistory, geothermal history, hydrocarbon generation history and hydrocarbon expulsion history were studied by using the methods of basin numerical modeling dynamically and pool-forming dynamics. It is shown that the Ordovician strata had entirely undergone five stages of initial deposition, uplift and erosion, rapid subsidence, alternating uplift and subsidence, and differential uplift and erosion; that under the background of lower heat flow on the whole, the paleoheat flow of Ordovician strata in the basin could be divided into two large stages of relatively high heat flow values period before Cretaceous deposition and relatively low ones after it; that the thermal evolution of organic matters in the hydrocarbon source rocks of Ordovician had entered into high mature-postmature stage on the whole and the intensity of gas generated was greater than that of oil generated, the hydrocarbon being mainly natural gas; and that the curves of the intensity of oil and gas expulsion at each time unit showed the feature of multi-peak-type, the accumulative intensity of gas expulsion was greater than that of oil expulsion. Thus natural gas exploration potential is good. 展开更多
关键词 DYNAMICS natural gas model hydrocarbon generation and expulsion the ORDOS Basin.
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