西南石油大学学报(自然科学版) ›› 2007, Vol. 29 ›› Issue (4): 201-202.DOI: 10.3863/j.issn.1000-2634.2007.04.101

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本期导读

  

  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2007-08-20 发布日期:2007-08-20

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  • Received:1900-01-01 Revised:1900-01-01 Online:2007-08-20 Published:2007-08-20

摘要: 我校碳酸盐岩研究以四川省“矿产普查与勘探”重点学科为支撑,以原石油工业部批准建立的“碳酸盐岩研究室”和四川省高校“天然气地质重点实验室”为依托,针对我国碳酸盐岩油气勘探领域的重大基础理论和应用技术问题开展科学研究。经过近五十年的建设与发展,形成了一系列稳定的、以碳酸盐岩及天然气勘探理论、方法和技术为特色的研究方向。专题报道《发挥碳酸盐岩研究优势,为油气勘探做贡献》,从学术思想、研究特色、主要研究方向及优势、主要研究内容和成果等方面就该学科的研究现状向读者作了较详细的介绍。
陈景山教授等人撰写的《特征不同的两种扇三角洲相识别与对比》,从盆缘斜坡坡度、海平面升降变化、沉积水动力、沉积特征等方面进行了研究,在琼东南盆地渐新统崖城组中识别并对比出了特征明显不同的靠山型和靠扇型两种海洋扇三角洲相,指出坡度较陡和海平面较高有利于靠山型扇三角洲的发育,坡度较平缓和海平面相对较低时,则有利于靠扇型扇三角洲的形成。
《东营凹陷沙三段源岩排烃特征及潜力评价》由姜福杰等人完成,论文根据排烃门限理论,利用生烃潜力法对东营凹陷沙三段上、中、下三个亚段烃源岩的排烃特征进行了研究,并对其资源潜力进行了评价。
针对目前大多数低渗透油层的渗流研究都是通过岩芯驱替实验得到渗透率与启动压力梯度的关系,不仅费时费工,而且考虑的因素比较单一的问题。许建红等人在《低渗透油藏启动压力梯度新算法及应用》一文中,通过对中国西部某低渗油田不同渗透率岩芯的室内驱替实验,从流体在低渗透多孔介质渗流机理出发,对实验数据进行处理和回归分析,建立了新的物理模型,提出了一种求解启动压力梯度的新方法。
随着我国主要油田的不断开发,采出液含水越来越高,水质也越来越复杂,由于采出污水大部分经处理后要回注入地层,所以油田污水处理成为亟待解决的问题。刘俊强等人在《高温烃降解菌在含油污水生化处理中的应用》一文中,为强化油田污水的生化处理效果,从胜利油田采出液中筛选出3株高温烃降解菌,在室内模拟现场条件进行污水生化处理试验,研究成果表明混合菌在一定程度上提高了含油污水生化处理的可行性,为油田污水治理提供了理论基础。
杨春雷等人完成的论文《单齿圈复合运动破岩系统动力特性分析》,通过有限元分析软件建立起单齿圈复合运动破岩系统模型,采用模拟岩石材料,进行了单齿圈复合运动破岩系统的仿真。对于分析不同类型钻头的破岩效率等具有非常重要的意义。
在石油钻井工程中,影响井壁稳定性的因素较多。秦启荣教授在《裂缝对石油井壁力学稳定性影响》一文中,利用三维有限元数值分析方法,模拟分析了裂缝对直立井井壁力学稳定性的影响,得出了裂缝的类型、产状、密度、组合特征及埋藏深度对井壁稳定性的影响程度,有一定的创新性。
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Abstract: The research of carbonate rock of our university is supported by “Mineral Detailed Survey and Exploration” which is the key subject of Sichuan province, and relies on “Carbonate Rock Laboratory” which is approved to found by the previous Ministry of Petroleum Industry and “the Key Laboratory of Natural Gas Geology” of Sichuan universities. It aimed at carrying out scientific research on important basic theory and problems of application technology in carbonate rock areas in China. After nearly 50 years of construction and development, a series of research directions which were steady, and featured the theory, method, and technology of carbonate rock and natural gas exploration were established. The special report “Enhance the Superority of the Research on Carbonate Rocks, Contribute for Oil and Gas Exploration” introduced the research status in detail to readers from aspects of academic thought, research characteristics, main research directions and advantages, main research contents and achievement.
“Recognition and Correlation of Two Distinct Types of Fan Delta Facies”, by Prof. Chen Jingshan and other authors, studied the steeper slope of basin-margin, eustatic sea level change, depositional hydrodynamic and depositional feature. Two distinct types of marine fan-delta facies in Yacheng Formation, Oligocene, Qiongdongnan Basin are identified, which are near alluvial fan and near mountains fan. It pointed out that it’s in favor of growing fan-delta facies near mountains when there are steeper slope and higher sea level in the basin margin and when there are gentle slope at downthrow block and relatively low sea level, then, it is in favor of growing fan-delta facies near alluvial fan.
“The Hydrocarbon-Expulsion Characters and the Potential Resource Evaluation of the 3rd Member of Shahejie Farmation in Dongying Sub-Depression” was finished by Jiang Fujie and other authors. In this paper, based on the theory of hydrocarbon-expulsion threshold, the hydrocarbon-expulsion characters and the potential source evaluation of the upper, middle, lower sections within the 3rd member of Shahejie Formation are discussed using the hydrocarbon-generated potential method.
At the present, to the research flowing through porous media in most of low permeable reservoirs, the relation between permeability and start-up pressure gradient is dained by core flooding experiment, which is time-consuming and highly cost, and also, the factors taking into consideration are simple. “A New Method and the Application on Calculating Start-up Pressure Gradient in Low Permeable Reservoirs” was written mainly by Xu Jianhong. Through the core flooding experiment, the core samples are from a certain low permeable reservoir in west China and with different permeability, processing and regression analysis of the data are carried on based on the mechanism of fluid flowing through low permeable porous media, a new physical model is set up, and a new method soluting start-up pressure gradient is gained.
With the development of main oil fields in China, the water contained in produced liquid becomes more and its quality more complex. Since most of the produced sewage should be injected back to formation after being treated, oil waste water treatment urgent need solve. “Application of High Temperature Hydrocarbon Degradation Bacteria on Biochemical Treatment to Produced Oily Water” was finished mainly by Liu Junqiang. In order to improve the biochemical treating effect of oilfield produced water, three bacteria strains are isolated from produced fluids in Shengli oilfield to carry on biochemical treatment test under indoor locale simulation station. The result shows that the mixed bacteria improved the feasibility of oil water treatment to some extent, which provided theoretical basis to oilfield sewage treatment.
The thesis “Dynamic Characteristics of the Compound Rock Breaking System of Single Tooth-Enclose”, mainly by Yang Chunlei, with finite element analysis software, established the single bit tooth-row compound movement rock-breaking system model. In the paper, the single bit tooth-row compound movement rock-breaking system is simulated using simulated rock, which is of important meaning in appraising the rock breaking efficiency of different drill styles.
Many factors can influence stability of well wall in the area of petroleum drilling engineering. “Influence of Rock Fractures on Mechanical Stability of Well-Wall”, by Qin Qirong, using 3-D infinite element numeric analysis technology, simulates the influence of fractures on the stability of petroleum well wall, concluding influence degrees of stability of well wall correspondingly with the types, attitudes, densities, combination patterns and embedding depth of the fractures, which has the innovation.
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