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Analysis of the world oil and gas exploration situation in 2021 被引量:1
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作者 DOU Lirong WEN Zhixin +4 位作者 WANG Jianjun WANG Zhaoming HE Zhengjun LIU Xiaobing ZHANG Ningning 《Petroleum Exploration and Development》 CSCD 2022年第5期1195-1209,共15页
The global exploration investment, new oil and gas discoveries, exploration business adjustment strategies of oil companies in 2021, and future favorable exploration domains are systematically analyzed using commercia... The global exploration investment, new oil and gas discoveries, exploration business adjustment strategies of oil companies in 2021, and future favorable exploration domains are systematically analyzed using commercial databases such as IHS and public information of oil companies. It has been found that the world oil and gas exploration situation in 2021 has continued the downturn since the outbreak of COVID-19. The investment and drilling workload decreased slightly, but the success rate of exploration wells, especially deepwater exploration wells, increased significantly, and the newly discovered reserves increased slightly compared with last year. Deep waters of the passive continental margin basins are still the leading sites for discovering conventional large and medium-sized oil and gas fields. The conventional oil and gas exploration in deep formations of onshore petroliferous basins has been keeping a good state, with tight/shale oil and gas discoveries made in Saudi Arabia, Russia, and other countries. While strengthening the exploration and development of local resources, national, international, and independent oil companies have been focusing on major overseas frontiers using their advantages, including risk exploration in deep waters and natural gas. Future favorable exploration directions in the three major frontiers, the global deep waters, deep onshore formations, and unconventional resources, have been clarified. Four suggestions are put forward for the global exploration business of Chinese oil companies: first, a farm in global deepwater frontier basins in advance through bidding at a low cost and adopt the “dual exploration model” after making large-scale discoveries;second, enter new blocks of emerging hot basins in the world through farm-in and other ways, to find large oil and gas fields quickly;third, cooperate with national oil companies of the resource host countries in the form of joint research and actively participate exploration of deep onshore formations of petroliferous basins;fourth, track tight/shale oil and gas cooperation opportunities in a few countries such as Saudi Arabia and Russia, and take advantage of mature domestic theories and technologies to farm in at an appropriate time. 展开更多
关键词 exploration investment exploration situation new discoveries favorable exploration areas overseas oil and gas exploration deep water deep formation unconventional resources
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Produced Water from Oil and Gas Exploration—Problems, Solutions and Opportunities 被引量:1
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作者 Feras Salem Thies Thiemann 《Journal of Water Resource and Protection》 2022年第2期142-185,共44页
Large volumes of water are generated in gas- and oil-production. This includes the water that is present originally in the reservoirs, but also water that is injected into the wells. While currently much of the produc... Large volumes of water are generated in gas- and oil-production. This includes the water that is present originally in the reservoirs, but also water that is injected into the wells. While currently much of the produced water is either reinjected or disposed of after treatment, treated produced water is increasingly seen as an interesting resource, especially in water-scarce regions. This review looks at different PW treatment methods available, with an emphasis on the management of PW in oil- and gas production on the Arabian Peninsula. 展开更多
关键词 Produced Water Oil exploration gas exploration Water Treatment Methodology Membrane Separation Arabian Peninsula
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Review of CNPC oil and Gas Exploration in 1998 被引量:1
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作者 Gao Ruiqi(Director of Oil and Gas Exploration Department , CNPC)Zhao Xianzheng(Durector of Strategic Planning Division ,Oil and Gas Exploration Department .CNPC) 《China Oil & Gas》 CAS 1999年第1期22-24,共3页
关键词 CNPC Review of CNPC oil and gas exploration in 1998
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PETROCHINA'S OIL AND GAS EXPLORATION PROGRESS IN 1^(ST) HALF OF 2001
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《China Oil & Gas》 CAS 2001年第3期6-11,共6页
关键词 gas THAN HALF OF 2001 PETROCHINA’S OIL AND gas exploration PROGRESS IN 1 ST
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ROUNDUP OF OIL AND GAS EXPLORATION RESULTS OF PETROCHINA IN 2000
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《China Oil & Gas》 CAS 2001年第2期20-27,共8页
关键词 HIGH ROUNDUP OF OIL AND gas exploration RESULTS OF PETROCHINA IN 2000 gas
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Bohai Bay Oil and Gas Exploration Contract Signed
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《China Oil & Gas》 CAS 1996年第2期123-123,共1页
BohaiBayOilandGasExplorationContractSigned¥//TheChinaNationalOffshoreOilCorporation(CNOCC)andtheAmericanfirm... BohaiBayOilandGasExplorationContractSigned¥//TheChinaNationalOffshoreOilCorporation(CNOCC)andtheAmericanfirmsofKerr-McGeeandH... 展开更多
关键词 BAY Bohai Bay Oil and gas exploration Contract Signed
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Review of CNPC Oil and Gas Exploration in 1998
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《China Oil & Gas》 CAS 1999年第2期100-101,共2页
关键词 CNPC Review of CNPC Oil and gas exploration in 1998
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REMARKABLE ACHIEVEMENTS OF XINJIANG IN OIL/GAS EXPLORATION IN 1997
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《China Oil & Gas》 CAS 1998年第2期97-97,共1页
关键词 gas REMARKABLE ACHIEVEMENTS OF XINJIANG IN OIL/gas exploration IN 1997
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Breakthrough Made in Ordos Gas Exploration──Reserves discovered initially forming a large gas field
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《China Oil & Gas》 CAS 2000年第4期26-27,共2页
关键词 Breakthrough Made in Ordos gas exploration Reserves discovered initially forming a large gas field
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Major Fields and Areas to Draw PetroChina's Oil and Gas Exploration Efforts
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《China Oil & Gas》 CAS 2001年第4期30-31,共2页
关键词 ROCK Major Fields and Areas to Draw PetroChina’s Oil and gas exploration Efforts
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Gas Exploration Potential in Sanhu,Qaidam Basin
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《China Oil & Gas》 CAS 2000年第2期63-64,共2页
关键词 gas exploration Potential in Sanhu Qaidam Basin
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Major Breakthrough Achieved for Natural Gas Exploration in Yancheng
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《China Oil & Gas》 CAS 1999年第2期104-104,共1页
关键词 Major Breakthrough Achieved for Natural gas exploration in Yancheng
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Review of Offshore Oil and Gas Exploration in 2000
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《China Oil & Gas》 CAS 2001年第1期29-30,共2页
关键词 Review of Offshore Oil and gas exploration in 2000
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PetroChina's Natural Gas Exploration Clue in the Near Future
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作者 Li Jingming Chen Mengjin Li Dongxu and Zhang Fudong(Langfang Branch of Petroleum Exploration and Development Research Institute) 《China Oil & Gas》 CAS 2002年第3期24-27,共4页
PetroChina's natural Exploration Situationand Problems Exploration situation Recently natural gas development of PetroChina Company Limited (hereinafter referred to as PetroChina) was in good situation. Its natura... PetroChina's natural Exploration Situationand Problems Exploration situation Recently natural gas development of PetroChina Company Limited (hereinafter referred to as PetroChina) was in good situation. Its natural gas Exploration has entered a rapid development stage. 展开更多
关键词 PetroChina’s Natural gas exploration Clue in the Near Future
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PetroChina Focusing on Oil and Gas Exploration to Secure Sustainable Development
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《China Oil & Gas》 CAS 2000年第4期8-10,共3页
关键词 PetroChina Focusing on Oil and gas exploration to Secure Sustainable Development
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Changqing Oil Field Makes Major Breakthrough in Natural Gas Exploration in Inner Mongolia
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《China Oil & Gas》 CAS 2000年第4期29-29,共1页
关键词 Changqing Oil Field Makes Major Breakthrough in Natural gas exploration in Inner Mongolia
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Geological characteristics and co-exploration and co-production methods of Upper Permian Longtan coal measure gas in Yangmeishu Syncline, Western Guizhou Province, China 被引量:7
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作者 Cai-qin Bi Jia-qiang Zhang +6 位作者 Yan-sheng Shan Zhi-fang Hu Fu-guo Wang Huan-peng Chi Yue Tang Yuan Yuan Ya-ran Liu 《China Geology》 2020年第1期38-51,共14页
Coal measure gas(also known as coal-bearing unconventional gas)is the key field and development direction of unconventional natural gas in recent years.The exploration and evaluation of coal measure gas(coalbed methan... Coal measure gas(also known as coal-bearing unconventional gas)is the key field and development direction of unconventional natural gas in recent years.The exploration and evaluation of coal measure gas(coalbed methane,coal shale gas and coal measure tight sandstone gas)from single coalbed methane has greatly expanded the field and space of resource evaluation,which is of positive significance for realizing the comprehensive utilization of coal resources,maximizing the benefits and promoting the innovation of oil and gas geological theory and technological advances in exploration and development.For the first time,in Yangmeishu Syncline of Western Guizhou Province,the public welfare coalbed methane geological survey project of China Geological Survey has been carried out a systematic geological survey of coal measure gas for the Upper Permian Longtan Formation,identified the geological conditions of coal measure gas and found high quality resources.The total geological resource quantity of coalbed methane and coal shale gas is 51.423×109 m3 and the geological resource abundance is up to 566×106 m3/km2.In this area,the coal measures are characterized by many layers of minable coal seams,large total thickness,thin to the medium thickness of the single layer,good gas-bearing property of coal seams and coal measure mudstone and sandstone,good reservoir physical property and high-pressure coefficient.According to the principle of combination of high quality and similarity of key parameters of the coal reservoir,the most favorable intervals are No.5-2,No.7 and No.13-2 coal seam in Well YMC1.And the pilot tests are carried out on coal seams and roof silty mudstone,such as staged perforation,increasing hydraulic fracturing scale and"three gas"production.The high and stable industrial gas flow with a daily gas output of more than 4000 m3 has been obtained,which has realized the breakthrough in the geological survey of coal measure gas in Southwest China.Based on the above investigation results,the geological characteristics of coal measure gas in the multi-thin-coal-seam-developed area and the coexploration and co-production methods,such as the optimization method of favorable intervals,the highefficiency fracturing and reservoir reconstruction method of coal measures,and the"three gas"drainage and production system,are systematically summarized in this paper.It will provide a reference for efficient exploration and development of coal measure gas in similar geological conditions in China. 展开更多
关键词 Coal measure gas Reservoir characteristics Favorable interval optimization Reservoir fracturing reconstruction Coal measures"three gas"drainage Oil and gas exploration enginerreing Upper Permian Longtan Formation Yangmeishu Syncline Western Guizhou Prov
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Petroleum geology and exploration direction of gas province in deepwater area of North Carnarvon Basin, Australia 被引量:2
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作者 Yang-wei Feng Yan Ren +1 位作者 Gong-cheng Zhang Hong-jun Qu 《China Geology》 2020年第4期623-632,共10页
North Carnarvon Basin is a gas province with minor oily sweet spots in deepwater area with water depth more than 500 m,which is one of the hot spots of global petroleum exploration for its series of giant hydrocarbon ... North Carnarvon Basin is a gas province with minor oily sweet spots in deepwater area with water depth more than 500 m,which is one of the hot spots of global petroleum exploration for its series of giant hydrocarbon discoveries in recent years.However,the degree of oil and gas exploration in deepwater area is still low,and the conditions for oil and gas accumulation are not clear.Based on the current exploration situation and latest database of fields,applying multidisciplinary analysis of hydrocarbon geology,hydrocarbon accumulation elements and its exploration direction of North Carnarvon Basin in deepwater area are analyzed.The results show that there are three sets of main source rocks in deepwater area of North Carnarvon Basin,which are Triassic marine shale in Locker Formation and delta coal-bearing mudstone with thin carbonaceous mudstone in Mungaroo Formation,Lower–Middle Jurassic paralic carbargilite and coal measure strata in Athol Formation and Murat Formation,Cretaceous delta mudstone in Barrow Group and marine shale in Muderong Formation.Most source rock samples show gas-prone capability.The coarse sandstone of delta facies in Middle–Upper Triassic Mungaroo Formation is the most important reservoir in deepwater area,Lower Cretaceous Barrow Group deep-water gravity flow or underwater fan turbidite sandstone is the secondly main reservoir.Lower Cretaceous marine shale in Muderong Formation is most important regional caprock.Triassic mudstone in Mungaroo Formation is an important interlayer caprock in deepwater area.There are two main reservoir accumulation assemblages in deepwater area,one is Triassic structural-unconformity plane reservoir accumulation assemblage of Locker Formation to Mungaroo Formation,and the other is Lower–Middle Jurassic Athol Formation and Murat Formation–Lower Cretaceous stratigraphic lithology-structural reservoir accumulation assemblage of Barrow Group to Muderong Formation.There are three main control factors of hydrocarbon Accumulation:One is coupling of source and seal control hydrocarbon distribution area,the second is multi-stage large wave dominated deltas dominate accumulation zone,the third is direction of hydrocarbon migration and accumulation in hydrocarbon-rich generation depression was controlled by overpressure.The south of Exmouth platform in deepwater area is adjacent to hydrocarbon rich depression zone,reservoir assemblage is characterized by“near source rocks,excellent reservoir facies,high position and excellent caprocks”,which is the main battlefield of deepwater oil and gas exploration in North Carnarvon Basin at present.There are a lot of fault block traps in the northern structural belt of Exmouth platform,and the favorable sedimentary facies belt at the far end of delta plain in Mungaroo Formation is widely distributed,which is the next favorable exploration zone.The Lower Cretaceous,which is located at the concave edge uplift adjacent to the investigator depression and the Exmouth platform,also has a certain exploration prospect in northwest of deepwater area. 展开更多
关键词 Mungaroo Formation Barrow Group Oil and gas exploration engineering Exmouth plateau North Carnarvon Basin AUSTRALIA
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Strategic Thinking on Shallow-water Oil and Gas Exploration in Offshore China 被引量:1
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作者 Ke-qiang Wu Jian-yong Xu Bo Kang 《Frontiers of Engineering Management》 2016年第4期349-355,共7页
The oil and gas exploration in offshore China has made great achievements,and as the important areas of offshore exploration,the shallow waters contribute most of the oil and gas reserves and production.However,the av... The oil and gas exploration in offshore China has made great achievements,and as the important areas of offshore exploration,the shallow waters contribute most of the oil and gas reserves and production.However,the available area for exploration is diminishing and the cost of exploration is rising.The field changes and ever increasing difficulties of exploration bring new challenges technically and economically.Therefore,for effective exploration of shallow-water oil and gas in offshore China,it is necessary to center on the general requirements of becoming a powerful marine country and the ideas of value exploration,initiate key research projects in the fields of China's offshore stratigraphic-lithologic reserves,Paleogene reserves,buried-hill reserves,high temperature and pressure reserves and hydrocarbon-rich sags,and form geological theories and explorative technologies of large and medium size oil and gas field in offshore China.The measures regarding the challenges include:(1) Innovating theoretical understanding and optimizing new exploration fields,(2) developing technical capabilities and improving the success rate of exploration,and(3) enhancing management level and deepening value exploration. 展开更多
关键词 offshore China shallow-water oil and gas exploration strategic thinking CHALLENGE COUNTERMEASURE
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Evaluation of the oil and gas preservation conditions, source rocks, and hydrocarbongenerating potential of the Qiangtang Basin: New evidence from the scientific drilling project 被引量:1
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作者 Li-jun Shen Jian-yong Zhang +4 位作者 Shao-yun Xiong Jian Wang Xiu-gen Fu Bo Zheng Zhong-wei Wang 《China Geology》 CAS CSCD 2023年第2期187-207,共21页
The Qiangtang Basin of the Tibetan Plateau,located in the eastern Tethys tectonic domain,is the largest new marine petroliferous region for exploration in China.The scientific drilling project consisting primarily of ... The Qiangtang Basin of the Tibetan Plateau,located in the eastern Tethys tectonic domain,is the largest new marine petroliferous region for exploration in China.The scientific drilling project consisting primarily of well QK-1 and its supporting shallow boreholes for geological surveys(also referred to as the Project)completed in recent years contributes to a series of new discoveries and insights into the oil and gas preservation conditions and source rock evaluation of the Qiangtang Basin.These findings differ from previous views that the Qiangtang Basin has poor oil and gas preservation conditions and lacks high-quality source rocks.As revealed by well QK-1 and its supporting shallow boreholes in the Project,the Qiangtang Basin hosts two sets of high-quality regional seals,namely an anhydrite layer in the Quemo Co Formation and the gypsum-bearing mudstones in the Xiali Formation.Moreover,the Qiangtang Basin has favorable oil and gas preservation conditions,as verified by the comprehensive study of the sealing capacity of seals,basin structure,tectonic uplift,magmatic activity,and groundwater motion.Furthermore,the shallow boreholes have also revealed that the Qiangtang Basin has high-quality hydrocarbon source rocks in the Upper Triassic Bagong Formation,which are thick and widely distributed according to the geological and geophysical data.In addition,the petroleum geological conditions,such as the type,abundance,and thermal evolution of organic matter,indicate that the Qiangtang Basin has great hydrocarbon-generating potential. 展开更多
关键词 Scientific drilling project Oil and gas preservation Source rock Quemo Co Formation Oil and gas exploration engineering Qiangtang Basin Tibet
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