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Formation conditions and accumulation characteristics of Bozhong 19-6 large condensate gas field in offshore Bohai Bay Basin 被引量:7
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作者 XU Changgui YU Haibo +1 位作者 WANG Jun LIU Xiaojian 《Petroleum Exploration and Development》 2019年第1期27-40,共14页
Based on the study of natural gas resource, low buried hill trap formation mechanism, high quality reservoir control factors and natural gas preservation conditions, the formation conditions and reservoir accumulation... Based on the study of natural gas resource, low buried hill trap formation mechanism, high quality reservoir control factors and natural gas preservation conditions, the formation conditions and reservoir accumulation characteristics of Bozhong 19-6 large condensate gas field were summarized. Large gas generation potential of multiple sets of thick humic-sapropelic source rocks in high maturity stage in Bozhong depression was the basis of large gas field formation. The multi-stage tectonic evolution since Indosinian period formed large-scale buried hill traps. The Tanlu fault activity formed multi-type reservoirs, and buried hill metamorphic rock of Archean and sand-conglomerate of Kongdian Formation were high-quality reservoirs. Thick overpressure lacustrine mudstone and weak neotectonic movement provided good preservation conditions. Bozhong 19-6 gas reservoir was a condensate gas reservoir with very high condensate oil content, and the gas origin was humic-sapropelic and kerogen-cracking gas, and the gas field had large gas thickness, high gas column characteristics and the accumulation process was first oil and then gas. The buried hill reservoir was a massive reservoir and the Kongdian reservoir was a stratified reservoir. The gas field had multi-channel hydrocarbon intense charge from overpressure source rocks, atmospheric-weak overpressure reservoir favorable for accumulation, thick overpressure mudstone caprock favorable for preservation, and natural gas ultra-late rapid accumulation model. 展开更多
关键词 OFFSHORE Bohai Bay Basin bozhong 19-6 GAS field CONDENSATE GAS low buried HILL METAMORPHIC rock reservoir accumulation characteristics ARCHEAN
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A multi-mineral model for predicting petrophysical properties of complex metamorphic reservoirs:Case study of the Bozhong Depression,Bohai Sea
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作者 Guoqiang Zhang Zhongjian Tan +5 位作者 Guibin Zhang Dong Li Chenchen Liu Zhang Zhang Jun Cao Xin Lei 《Energy Geoscience》 EI 2024年第3期66-76,共11页
Interpreting reservoir properties through log data and logging responses in complex strata is critical for efficient petroleum exploitation,particularly for metamorphic rocks.However,the unsatisfactory accuracy of suc... Interpreting reservoir properties through log data and logging responses in complex strata is critical for efficient petroleum exploitation,particularly for metamorphic rocks.However,the unsatisfactory accuracy of such interpretations in complex reservoirs has hindered their widespread application,resulting in severe inconvenience.In this study,we proposed a multi-mineral model based on the least-square method and an optimal principle to interpret the logging responses and petrophysical properties of complex hydrocarbon reservoirs.We began by selecting the main minerals based on a comprehensive analysis of log data,X-ray diffraction,petrographic thin sections and scanning electron microscopy(SEM)for three wells in the Bozhong 19-6 structural zone.In combination of the physical properties of these minerals with logging responses,we constructed the multi-mineral model,which can predict the log curves,petrophysical properties and mineral profile.The predicted and measured log data are evaluated using a weighted average error,which shows that the multi-mineral model has satisfactory prediction performance with errors below 11%in most intervals.Finally,we apply the model to a new well“x”in the Bozhong 19-6 structural zone,and the predicted logging responses match well with measured data with the weighted average error below 11.8%for most intervals.Moreover,the lithology is dominated by plagioclase,K-feldspar,and quartz as shown by the mineral profile,which correlates with the lithology of the Archean metamorphic rocks in this region.It is concluded that the multi-mineral model presented in this study provides reasonable methods for interpreting log data in complex metamorphic hydrocarbon reservoirs and could assist in efficient development in the future. 展开更多
关键词 Logging interpretation Metamorphic rock Buried hill reservoir Petrophysical property prediction bozhong 19-6 structural zone
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Late-stage rapid accumulation of the PL19-3 giant oilfield in an active fault zone during Neotectonism in the Bozhong depression,Bohai Bay 被引量:8
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作者 ZOU HuaYao GONG ZaiSheng +1 位作者 TENG ChangYu ZHUANG XinBin 《Science China Earth Sciences》 SCIE EI CAS 2011年第3期388-398,共11页
Late-stage is defined here as the period when Neotectonism occurred since 5.1 Ma. Most petroliferous basins in China lie in the areas where Neotectonism occurred intensively. In recent years, Chinese petroleum geologi... Late-stage is defined here as the period when Neotectonism occurred since 5.1 Ma. Most petroliferous basins in China lie in the areas where Neotectonism occurred intensively. In recent years, Chinese petroleum geologists have paid much attention to late-stage petroleum accumulation. The PL19-3 giant oilfield is situated where faulting activities occurred violently during Neotectonism. To understand the mechanism of lat-stage rapid accumulation, we discussed the most important aspects responsible for the formation of the giant oilfield, including oil generation, active oil-source rock occurrence, fault activity and fault conduits, late-stage rapid oil injection as well as the distinguishing indicators. This study shows that: (1) sufficient oil was supplied to the PL19-3 field since 5.1 Ma because the PL19-3 structure was surrounded by four sags in which three intervals of high-quality source rocks remained active during Neotectonism; (2) densely distributed faults and high porosity/permeability sandstone carrier beds comprised the effective conduit system for oil migration and injection; (3) oil migrated along the faults and charged the PL19-3 structure rapidly by means of seismic pumping which was triggered by frequent earthquakes during Neotetonism. It is documented that elevated reservoir temperature, abnormal geothermal gradients and abnormally high homogenization temperatures of the fluid inclusions are the indicators for late-stage rapid oil accumulation. 展开更多
关键词 Neotectonism active oil-source rock (AOSR) migration conduit late-stage rapid accumulation PL19-3 oilfield bozhong depression
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Formation conditions and exploration direction of large natural gas reservoirs in the oil-prone Bohai Bay Basin, East China 被引量:4
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作者 XUE Yong’an WANG Deying 《Petroleum Exploration and Development》 2020年第2期280-291,共12页
The Bohai Bay Basin is a typical oil-prone basin, in which natural gas geological reserves have a small proportion. In this basin, the gas source rock is largely medium-deep lake mudstone with oil-prone type Ⅱ2-Ⅱ1 k... The Bohai Bay Basin is a typical oil-prone basin, in which natural gas geological reserves have a small proportion. In this basin, the gas source rock is largely medium-deep lake mudstone with oil-prone type Ⅱ2-Ⅱ1 kerogens, and natural gas preservation conditions are poor due to active late tectonic movements. The formation conditions of large natural gas fields in the Bohai Bay Basin have been elusive. Based on the exploration results of Bohai Bay Basin and comparison with large gas fields in China and abroad, the formation conditions of conventional large-scale natural gas reservoirs in the Bohai Bay Basin were examined from accumulation dynamics, structure and sedimentation. The results show that the formation conditions of conventional large natural gas reservoirs in Bohai Bay Basin mainly include one core element and two key elements. The core factor is the strong sealing of Paleogene "quilt-like" overpressure mudstone. The two key factors include the rapid maturation and high-intensity gas generation of source rock in the late stage and large scale reservoir. On this basis, large-scale nature gas accumulation models in the Bohai Bay Basin have been worked out, including regional overpressure mudstone enriching model, local overpressure mudstone depleting model, sand-rich sedimentary subsag depleting model and late strongly-developed fault depleting model. It is found that Bozhong sag, northern Liaozhong sag and Banqiao sag have favorable conditions for the formation of large-scale natural gas reservoirs, and are worth exploring. The study results have important guidance for exploration of large scale natural gas reservoirs in the Bohai Bay Basin. 展开更多
关键词 Bohai Bay Basin oil type lacustrine basin large nature gas pool bozhong 19-6 regional"quilt-like"overpressure mudstone rapid and high-intensity gas generation in late period large scale reservoir
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复杂条件下新型加重材料对水基钻井液的影响
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作者 王皓 罗鹏 +2 位作者 阚留杰 么春雨 刘少峰 《当代化工》 CAS 2024年第10期2391-2394,2400,共5页
在能源安全备受重视的当下,石油与天然气资源在国计民生中的重要性不言而喻。在各个油田有利地质圈闭钻探殆尽的大背景下,复杂条件下的油气井钻探变得越发常见,钻井工作也迎来一些新的挑战。以高温高压为代表的复杂地质条件需要克服高... 在能源安全备受重视的当下,石油与天然气资源在国计民生中的重要性不言而喻。在各个油田有利地质圈闭钻探殆尽的大背景下,复杂条件下的油气井钻探变得越发常见,钻井工作也迎来一些新的挑战。以高温高压为代表的复杂地质条件需要克服高地层压力带来的井喷风险,因此选用合适的加重材料对复杂条件下钻井所用的水基钻井液进行处理势在必行,例如渤海湾盆地的渤中19-6油田,因其目的层多为致密高压的中生界火山岩,在地层压力过大的情况下,势必要寻求新型钻井液加重材料确保钻井作业的安全与高效。选用氧化铁作为一种新型的加重材料加入水基钻井液中,系统研究了氧化铁作为钻井液加重材料,其质量浓度对水基钻井液的影响。将3种不同质量浓度的氧化铁加重材料分别加入100 L水中,制备高密度钻井液,并对钻井液密度、黏度与滤饼性能等进行了评价。将加入氧化铁加重材料的水基钻井液在120℃和3500 kPa的热环境下反应20 h之后,在50℃的温度下对其性质进行评估。实验结果表明,加入氧化铁加重材料的质量浓度与水基钻井液的表观黏度、塑性黏度、屈服点成正比关系。随着钻井液中氧化铁质量浓度的增加,单位面积受力(YP)/塑性黏度(PV)比值降低。滤饼厚度也随着氧化铁加重材料质量浓度的增加而增大,而滤饼孔隙率几乎保持恒定。 展开更多
关键词 复杂条件 水基钻井液 加重材料 氧化铁 渤中19-6油田
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