期刊文献+
共找到11篇文章
< 1 >
每页显示 20 50 100
Progress and Development Direction of “Three-High” Oil and Gas Well Testing Technology 被引量:1
1
作者 Bo Zhang Fayon Yuan +3 位作者 Hao Su Ming Cao Ruifeng Guo Chenxiang Sun 《Journal of Power and Energy Engineering》 2022年第6期1-13,共13页
By reviewing the development of “three-high” oil and gas well testing technology of Sinopec in recent years, this paper systematically summarizes the application of “three-high” oil and gas well testing technology... By reviewing the development of “three-high” oil and gas well testing technology of Sinopec in recent years, this paper systematically summarizes the application of “three-high” oil and gas well testing technology of Sinopec in engineering optimization design technology, and high temperature and high pressure testing technology, high pressure and high temperature transformation completion integration technology. Major progress has been made in seven aspects: plug removal and re-production technology of production wells in high acid gas fields;wellbore preparation technology of ultra-deep, high-pressure, and high-temperature oil and gas wells;surface metering technology;and supporting tool development technology. This paper comprehensively analyzes the challenges faced by the “three-high” oil and gas well production testing technology in four aspects: downhole tools, production testing technology, safe production testing, and the development of low-cost production test tools. Four development directions are put forward: 1) Improve ultra-deep oil and gas testing technology and strengthen integrated geological engineering research. 2) Deepen oil and gas well integrity evaluation technology to ensure the life cycle of oil and gas wells. 3) Carry out high-end, customized, and intelligent research on oil test tools to promote the low-cost and efficient development of ultra deep reservoirs. 4) Promote the fully automatic control of the surface metering process to realize the safe development of “three-high” reservoirs. 展开更多
关键词 “Three-High” oil and gas wells oil Test Geological Engineering Integra-tion Intelligent Downhole Tools
下载PDF
Prediction of wax precipitation region in wellbore during deep water oil well testing 被引量:1
2
作者 GAO Yonghai LIU Kai +4 位作者 ZHAO Xinxin LI Hao CUI Yanchun XIN Guizhen SUN Baojiang 《Petroleum Exploration and Development》 2018年第2期351-357,共7页
During deep water oil well testing, the low temperature environment is easy to cause wax precipitation, which affects the normal operation of the test and increases operating costs and risks. Therefore, a numerical me... During deep water oil well testing, the low temperature environment is easy to cause wax precipitation, which affects the normal operation of the test and increases operating costs and risks. Therefore, a numerical method for predicting the wax precipitation region in oil strings was proposed based on the temperature and pressure fields of deep water test string and the wax precipitation calculation model. And the factors affecting the wax precipitation region were analyzed. The results show that: the wax precipitation region decreases with the increase of production rate, and increases with the decrease of geothermal gradient, increase of water depth and drop of water-cut of produced fluid, and increases slightly with the increase of formation pressure. Due to the effect of temperature and pressure fields, wax precipitation region is large in test strings at the beginning of well production. Wax precipitation region gradually increases with the increase of shut-in time. These conclusions can guide wax prevention during the testing of deep water oil well, to ensure the success of the test. 展开更多
关键词 deep water oil and gas development oil well testing wellbore WAX PRECIPITATION temperature FIELD pressure FIELD WAX PRECIPITATION REGION PREDICTION
下载PDF
Application of wellhead suction anchor technology in the second production test of natural gas hydrates in the South China Sea 被引量:2
3
作者 Bo Li Bei-bei Kou +7 位作者 Bin Li Jing Li Jing Zeng Qing-lei Niu Yu-tao Shao Ke-wei Zhang Hao-yu Yu Ying-sheng Wang 《China Geology》 2022年第2期293-299,共7页
Traditional suction anchor technology is mainly used in the fields of subsea structure bearing foundations,single-point mooring systems and offshore wind power.It is characterized by providing sufficient lateral and v... Traditional suction anchor technology is mainly used in the fields of subsea structure bearing foundations,single-point mooring systems and offshore wind power.It is characterized by providing sufficient lateral and vertical bearing capacities and lateral bending moment.The anchor structure of a traditional suction anchor structure is improved with wellhead suction anchor technology,where a central pipe is added as a channel for drilling and completion operations.To solve the technical problems of a low wellhead bearing capacity,shallow built-up depth,and limited application of conductor jetting in the second production test of natural gas hydrates(NGHs)in the South China Sea(SCS),the China Geological Survey(CGS)took the lead in independently designing and manufacturing a wellhead suction anchor,which fulfilled the requirements of the production test.This novel anchor was successfully implemented in the second production test for the first time,providing a stable wellhead foundation for the success of the second production test of NGHs in the SCS. 展开更多
关键词 wellhead suction anchor Conductor jetting Marine NGHs Production test NGHs exploration trial engineering oil and gas exploration engineering South China Sea
下载PDF
Passability test and simulation of sand control string with natural gas hydrates completion in large curvature hole
4
作者 Hao-xian Shi Yan-jiang Yu +12 位作者 Ru-lei Qin Jun-yu Deng Yi-xin Zhong Li-qiang Qi Bin Li Bo Fan Qiu-ping Lu Jian Wang Kui-wei Li Ye-cheng Gan Gen-long Chen Hao-wen Chen Zhi-ming Wu 《China Geology》 CAS CSCD 2023年第1期27-36,共10页
To meet the requirements of marine natural gas hydrate exploitation,it is necessary to improve the penetration of completion sand control string in the large curvature borehole.In this study,large curvature test wells... To meet the requirements of marine natural gas hydrate exploitation,it is necessary to improve the penetration of completion sand control string in the large curvature borehole.In this study,large curvature test wells were selected to carry out the running test of sand control string with pre-packed screen.Meanwhile,the running simulation was performed by using the Landmark software.The results show that the sand control packer and screen can be run smoothly in the wellbore with a dogleg angle of more than 20°/30 m and keep the structure stable.Additionally,the comprehensive friction coefficient is 0.4,under which and the simulation shows that the sand control string for hydrate exploitation can be run smoothly.These findings have important guiding significance for running the completion sand control string in natural gas hydrate exploitation. 展开更多
关键词 Natural gas hydrates(NGHs) Completion sand control string Large curvature borehole Passability test Friction coefficient oil and gas exploration engineering NGHs exploration trial engineering
下载PDF
Exploration of Complicated Oil and Gas Fields
5
作者 Zhang Xiangning China National Oil & Gas Exploration & Development Corporation, Beijing Liu Linqun 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1989年第1期65-77,共13页
Complicated oil and gas fields occupy an important position in oil and gas exploration. In this paper, complicated oil and gas fields are grouped into four types: fault-block, lithologic, stratigraphic and fissure typ... Complicated oil and gas fields occupy an important position in oil and gas exploration. In this paper, complicated oil and gas fields are grouped into four types: fault-block, lithologic, stratigraphic and fissure types. On the basis of the new theory of petroleum geological exploration in composite oil and gas accumulation areas within continental basins, a new exploration sequence suitable for complicated oil and gas fields has been established, which comprises four stages:(1) initial exploration;(2) preliminary exploration;(3) early step-by-step exploration and development: and(4) late step-by-step exploration and development. The idea of cybernetics has been taken to control various links of a systematic exploration project so as to fully, effectively and comprehensively utilize the new exploration techniques, eventually realizing the optimization of exploration with the aim of raising the efficiency of exploration of complicated oil and gas fields. 展开更多
关键词 PRO TEST Exploration of Complicated oil and gas Fields
下载PDF
TEST STUDY OF DETECTING OIL AND GAS BY USING REMOTE SENSING TECHNIQUE
6
作者 Zhu Zhenhai, Zhang Jianzhong, Chen Baowen (Remote Sensing Application Institute, The Chinese Academy of Sciences) 《遥感信息》 CSCD 1990年第A02期37-38,共2页
Ⅰ The Indexes of Detecting Oil and Gas Resources The deeply buried reservoir which in a dynamic equilibrium state has a great pressure inside, and between it and earth surface there is a great difference of pressure.... Ⅰ The Indexes of Detecting Oil and Gas Resources The deeply buried reservoir which in a dynamic equilibrium state has a great pressure inside, and between it and earth surface there is a great difference of pressure. Therefore the hydrocarbon must spread and move vertically to the surface along the pressure gradient orientation. Hydrocarbons in the reservoir along some small rifts, cracks, joints and cleavages penetrate the overlying strata and seepage onto the surface. Thus the hydrocarbons become unvisble oil and gas signs. This process is called the phenomena of hydrocarbon microseepage of reservoir. Hydrocarbons microseepage in the process 展开更多
关键词 TEST STUDY OF DETECTING oil and gas BY USING REMOTE SENSING TECHNIQUE gas
下载PDF
Contract for Oil/Gas Testing Signed Between Jinlonghua & Esso
7
作者 Wang Keyuo 《China Oil & Gas》 CAS 1996年第3期189-189,共1页
Contract for Oil/Gas Testing Signed Between Jinlonghua & EssoContractforOil/GasTestingSignedBetweenJinlonghu... Contract for Oil/Gas Testing Signed Between Jinlonghua & EssoContractforOil/GasTestingSignedBetweenJinlonghua&Esso¥WangKeyuJi... 展开更多
关键词 Contract for oil/gas testing Signed Between Jinlonghua Esso
下载PDF
Nuclear magnetic resonance study of the formation and dissociation process of nature gas hydrate in sandstone
8
作者 Dong-hui Xing Xu-wen Qin +5 位作者 Hai-jun Qiu Hong-feng Lu Yi-ren Fan Xin-min Ge Cheng Lu Jin-wen Du 《China Geology》 CAS 2022年第4期630-636,共7页
In this work,the authors monitored the formation and dissociation process of methane hydrate in four different rock core samples through nuclear magnetic resonance(NMR)relaxation time(T_(2))and 2D imaging measurement.... In this work,the authors monitored the formation and dissociation process of methane hydrate in four different rock core samples through nuclear magnetic resonance(NMR)relaxation time(T_(2))and 2D imaging measurement.The result shows that the intensity of T_(2) spectra and magnetic resonance imaging(MRI)signals gradually decreases in the hydrate formation process,and at the same time,the T_(2) spectra move toward the left domain as the growth of hydrate in the pores of the sample accelerates the decay rate.The hydrate grows and dissociates preferentially in the purer sandstone samples with larger pore size and higher porosity.Significantly,for the sample with lower porosity and higher argillaceous content,the intensity of the T_(2) spectra also shows a trend of a great decrease in the hydrate formation process,which means that high-saturation gas hydrate can also be formed in the sample with higher argillaceous content.The changes in MRI of the sample in the process show that the formation and dissociation of methane hydrate can reshape the distribution of water in the pores. 展开更多
关键词 Nature gas hydrates(NGHs) Methane hydrate Nuclear magnetic resonance(NMR) Magnetic resonance imaging(MRI) Formation and dissociation Saturation Berea sandstone Marine hydrates production test oil and gas exploration engineering
下载PDF
Evaluation of gas condensate reservoir behavior using velocity dependent relative permeability during the numerical well test analysis 被引量:2
9
作者 Arash Azamifard Mahnaz Hekmatzadeh Bahram Dabir 《Petroleum》 2016年第2期156-165,共10页
Gas condensate is one of the most different fluids in reservoir simulation due to retrograde condensation in case of pressure reduction.In this kind of fluids,two phenomena named negative inertia and positive coupling... Gas condensate is one of the most different fluids in reservoir simulation due to retrograde condensation in case of pressure reduction.In this kind of fluids,two phenomena named negative inertia and positive coupling,become significant in the high velocity zone around the wellbore.In this study,a modified black oil simulator is developed that take into account the velocity dependent relative permeability.Against the industrial simulator that assumes linear variation of transmissibilities by pressure,modified black oil nonlinear equations are solved directly without linearization.The developed code is validated by ECLIPSE simulator.The behavior of two real gas condensate fluids,a lean and a rich one,are compared with each other.For each fluid,simulations of PVT experiments are carried out to calculate black oil property applying Coats approach for gas condensate fluids.For both fluids,the proposed models for gas condensate velocity dependent relative permeability show different influence of velocity on relative permeability in the same conditions.Moreover,it is observed that higher flow rate of gas production leads to more condensate production during constant rate well testing. 展开更多
关键词 gas condensate Velocity dependent relative permeability Modified black oil simulation Numerical well testing
原文传递
煤层气与常规天然气测试技术的异同 被引量:5
10
作者 刘曰武 赵培华 +4 位作者 鹿倩 方惠军 徐建平 蒋华 林学敏 《油气井测试》 2010年第6期6-11,共6页
煤层气测试资料的分析成果对确定煤层气的排采制度和制订合理的开发方案是至关重要的,研究该问题的目的在于解决目前只能利用常规方法进行测试、常规软件进行测试资料解释的问题。煤储层在成份、结构及其物理力学性质上与常规储层(如砂... 煤层气测试资料的分析成果对确定煤层气的排采制度和制订合理的开发方案是至关重要的,研究该问题的目的在于解决目前只能利用常规方法进行测试、常规软件进行测试资料解释的问题。煤储层在成份、结构及其物理力学性质上与常规储层(如砂岩)有着明显的差异;煤层气的赋存和采出机理与砂岩中天然气也有着本质区别。要获取煤层准确参数、正确评价煤层,必须研究煤层气测试的相关理论方法。但目前对煤层气测试的认识较少。从常规天然气测试与煤层气测试的差异对比的角度出发,给出了煤层气测试的诸多特征。从研究对象的储层特征、煤层气的赋存特征以及不同开发阶段的流体分布及流动特征等方面,论述了煤层气与常规天然气测试技术异同的根本原因。从测试方法、测试工艺、解释模型和资料分析方法等方面,分析了煤层气与常规天然气测试技术的差异。研究成果对充分认识和理解煤层气测试的重要作用有积极的意义。 展开更多
关键词 煤层气井 油气井 试井
下载PDF
浅析煤层气井与常规油气井在试井方面的差别 被引量:13
11
作者 陈彦丽 刘启国 +1 位作者 张烈辉 王伟 《中国煤层气》 2006年第4期44-46,共3页
本文从煤层气试井的对象、煤岩结构、开采阶段、试井模型、试井分析方法等方面简要讨论了煤层气试井和常规油气井试井的差别。
关键词 煤层气井 油气井 试井
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部