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Driving forces and their relative contributions to hydrocarbon expulsion from deep source rocks: A case of the Cambrian source rocks in the Tarim Basin
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作者 Bo Pang Jun-Qing Chen +2 位作者 Xiong-Qi Pang Tao Hu Yue Sheng 《Petroleum Science》 SCIE EI CAS CSCD 2023年第1期20-33,共14页
To thoroughly understand the dynamic mechanism of hydrocarbon expulsion from deep source rocks,in this study,five types of hydrocarbon expulsion dynamics(thermal expansion,hydrocarbon diffusion,compaction,product volu... To thoroughly understand the dynamic mechanism of hydrocarbon expulsion from deep source rocks,in this study,five types of hydrocarbon expulsion dynamics(thermal expansion,hydrocarbon diffusion,compaction,product volume expansion,and capillary pressure difference(CPD))are studied.A model is proposed herein to evaluate the relative contribution of different dynamics for hydrocarbon expulsion using the principle of mass balance,and the model has been applied to the Cambrian source rocks in the Tarim Basin.The evaluation results show that during hydrocarbon expulsion from the source rocks,the relative contribution of CPD is the largest(>50%),followed by compaction(10%-40%),product volume expansion(5%-30%),and thermal expansion(2%-20%).The relative contribution of diffusion to hydrocarbon expulsion is minimal(<10%).These results demonstrate that CPD plays an important role in the hydrocarbon expulsion process of deep source rocks.The hydrocarbon expulsion process of source rocks can be categorized into three stages based on the contribution of different dynamics to the process:the first stage is dominated by compaction and diffusion to expel hydrocarbons,the second stage is dominated by product volume expansion and CPD,and the third stage is dominated by product volume expansion and CPD.This research offers new insights into hydrocarbon exploration in tight oil and gas reservoirs. 展开更多
关键词 Driving force Dynamic mechanism Hydrocarbon expulsion Deep oil and gas exploration Tarim Basin
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成熟探区有效烃源岩的评价方法——以辽东湾地区为例 被引量:13
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作者 金强 侯庆杰 +3 位作者 程付启 王世梁 张如才 王飞龙 《石油学报》 EI CAS CSCD 北大核心 2019年第3期257-267,共11页
油气勘探成熟区预测资源量与勘探发现不符,问题可能在于有效烃源岩(特别是深层烃源岩)及其油气生成潜力没有得到正确地评价。在辽东湾地区,首先利用地球化学和地球物理手段对各凹陷中5套烃源岩进行了分层评价和油气生成模拟实验,计算得... 油气勘探成熟区预测资源量与勘探发现不符,问题可能在于有效烃源岩(特别是深层烃源岩)及其油气生成潜力没有得到正确地评价。在辽东湾地区,首先利用地球化学和地球物理手段对各凹陷中5套烃源岩进行了分层评价和油气生成模拟实验,计算得到油气生成强度;然后利用烃源岩埋藏过程中油气的生成模型、孔隙度变化模型及其油气饱和度,计算得到油气排出率,并根据烃源岩与砂岩的不同组合形式对油气排出效率进行校正,得到油气排出强度;最后将油气生成强度和排出强度与油气田储量规模进行了相关分析,根据相关性确定有效烃源岩的性质、分布以及对油气聚集的控制规律。结果表明,在辽东湾地区,生油强度大于25×10~4t/km^2(排油强度大于15×10~4t/km^2)的烃源岩可以形成储量规模大于500×10~4t的油田,为有效烃源岩。其中,生油强度大于200×10~4t/km^2(排油强度大于125×10~4t/km^2)的烃源岩可形成储量规模大于5 000×10~4t的油田,为优质烃源岩;而当生油强度低于25×10~4t/km^2(排油强度小于15×10~4t/km^2)时,没有规模储量的油气田,此类烃源岩为非有效烃源岩。与以往以有机碳含量的下限值分析为核心的有效烃源岩评价不同,这种利用油气生成强度和排出强度开展有效烃源岩评价的方法有利于推动中国东部成熟探区的油气精细勘探。 展开更多
关键词 生油气强度 油气排出强度 有效烃源岩 评价方法 辽东湾地区
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