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Large-scale physical simulation of injection and production of hot dry rock in Gonghe Basin,Qinghai Province,China
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作者 ZHAO Peng ZHU Haiyan +4 位作者 LI Gensheng CHEN Zuo CHEN Shijie SHANGGUAN Shuantong QI Xiaofei 《Petroleum Exploration and Development》 SCIE 2024年第3期741-752,共12页
Based on the independently developed true triaxial multi-physical field large-scale physical simulation system of in-situ injection and production,we conducted physical simulation of long-term multi-well injection and... Based on the independently developed true triaxial multi-physical field large-scale physical simulation system of in-situ injection and production,we conducted physical simulation of long-term multi-well injection and production in the hot dry rocks of the Gonghe Basin,Qinghai Province,NW China.Through multi-well connectivity experiments,the spatial distribution characteristics of the natural fracture system in the rock samples and the connectivity between fracture and wellbore were clarified.The injection and production wells were selected to conduct the experiments,namely one injection well and two production wells,one injection well and one production well.The variation of several physical parameters in the production well was analyzed,such as flow rate,temperature,heat recovery rate and fluid recovery.The results show that under the combination of thermal shock and injection pressure,the fracture conductivity was enhanced,and the production temperature showed a downward trend.The larger the flow rate,the faster the decrease.When the local closed area of the fracture was gradually activated,new heat transfer areas were generated,resulting in a lower rate of increase or decrease in the mining temperature.The heat recovery rate was mainly controlled by the extraction flow rate and the temperature difference between injection and production fluid.As the conductivity of the leak-off channel increased,the fluid recovery of the production well rapidly decreased.The influence mechanisms of dominant channels and fluid leak-off on thermal recovery performance are different.The former limits the heat exchange area,while the latter affects the flow rate of the produced fluid.Both of them are important factors affecting the long-term and efficient development of hot dry rock. 展开更多
关键词 hot dry rock simulation of injection and production heat extraction performance CONDUCTIVITY dominant channel fluid leak-off
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Numerical simulation of operation performance on production and injection of a double well geothermal system in Kailu Basin, Inner Mongolia 被引量:1
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作者 Yu-kun Sun Feng Liu +1 位作者 Huajun Wang Xin-zhi Gao 《Journal of Groundwater Science and Engineering》 2022年第2期196-208,共13页
Inner Mongolia is abundant in geothermal resources,but the development and utilization of medium-depth geothermal resources for clean heating in winter is still in the preliminary stage compared with the neighboring p... Inner Mongolia is abundant in geothermal resources,but the development and utilization of medium-depth geothermal resources for clean heating in winter is still in the preliminary stage compared with the neighboring provinces.In this paper,a recently developed geothermal heating system using the Mesozoic sandstone reservoirs in Baokang of Kailu Basin,Eastern Inner Mongolia was investigated,a threedimensional geological model of a pair of production and injection well was established,and numerical simulations on the long term operation performance were conducted and verified by pumping test and water level recovery test data.The effects of flow rates,the direction of wells,injection temperature and ratios on the flow field and water level in the thermal reservoir were analyzed.The results show that considering a 30-year operation period and a production rate from 90 m^(3)/h to 110 m^(3)/h,the optimum well spacing can be increased from 225 m to 245 m,with an average value of 235 m.With the decrease of the injection temperature,the cold front of the injection water has an increasing influence on the temperature in the production well.A complete injection or the principle of production according to injection is recommended in order to maintain the long-term operation stability.In addition,the location of the injection well should be arranged in the downstream of the natural flow field.The present results can provide a useful guide for the optimum design and performance prediction of geothermal wells,thus maintaining the production and injection balance and promoting the sustainable development and utilization of medium-depth and deep geothermal resources. 展开更多
关键词 Geothermal well Optimum well spacing production and injection Numerical simulation Heat breakthrough
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Stress sensitivity of formation during multi-cycle gas injection and production in an underground gas storage rebuilt from gas reservoirs 被引量:1
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作者 LI Jiqiang ZHAO Guanqun +5 位作者 QI Zhilin YIN Bingyi XU Xun FANG Feifei YANG Shenyao QI Guixue 《Petroleum Exploration and Development》 CSCD 2021年第4期968-977,共10页
Permeability sensitivity to stress experiments were conducted on standard core samples taken from Wen 23 Gas Storage at multi-cycle injection and production conditions of the gas storage to study the change pattern of... Permeability sensitivity to stress experiments were conducted on standard core samples taken from Wen 23 Gas Storage at multi-cycle injection and production conditions of the gas storage to study the change pattern of stress sensitivity of permeability.A method for calculating permeability under overburden pressure in the multi-cycle injection and production process was proposed,and the effect of stress sensitivity of reservoir permeability on gas well injectivity and productivity in UGS was analyzed.Retention rate of permeability decreased sharply first and then slowly with the increase of the UGS cycles.The stress sensitivity index of permeability decreased with the increase of cycle number of net stress variations in the increase process of net stress.The stress sensitivity index of permeability hardly changed with the increase of cycle number of net stress variations in the decrease process of net stress.With the increase of cycle number of net stress variation,the stress sensitivity index of permeability in the increase process of net stress approached that in the decrease process of net stress.The lower the reservoir permeability,the greater the irreversible permeability loss rate,the stronger the cyclic stress sensitivity,and the higher the stress sensitivity index of the reservoir,the stronger the reservoir stress sensitivity.The gas zones with permeability lower than 0.3’10-3 mm2 are not suitable as gas storage regions.Stress sensitivity of reservoir permeability has strong impact on gas well injectivity and productivity and mainly in the first few cycles. 展开更多
关键词 gas storage rebuilt from gas reservoirs multi-cycle injection and production reservoir stress sensitivity injection and production capacity gas storage layer selection
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Lag times in toe-to-heel air injection(THAI)operations explain underlying heavy oil production mechanisms
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作者 Wei Wei Ian D.Gates 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1165-1173,共9页
From a time value of revenue point of view,it is preferred that the time between reservoir stimulation and oil production response is small.Heavy oil combustion processes have a lag time between air injection and liqu... From a time value of revenue point of view,it is preferred that the time between reservoir stimulation and oil production response is small.Heavy oil combustion processes have a lag time between air injection and liquid production,but the common practice in production data analysis uses simultaneous injection and production data when seeking a relationship between them.In this research,the time scales of production for the Kerrobert toe-to-heel air injection(THAI)heavy oil project in Saskatchewan,Canada,is analyzed by using cross correlation analysis,i.e.time delay analysis between air injection and oil production.The results reveal two time scales with respect to production response with two distinctive recovery mechanisms:(1)a short time scale response(nearly instantaneous)where oil production peaks right after air injection(directly after opening production well)reflecting cold heavy oil production mechanisms,and(2)a longer time scale(of order of 100-300 days)response where peak production occurs associated with the collective phenomena of air injection,heat generating reactions,heat transfer,and finally,heated mobilized heavy oil drainage to the production well.This understanding of the two time scales and associated production mechanisms provides a basis for improving the performance of THAI. 展开更多
关键词 Heavy oil In situ combustion Toe-to-heel air injection(THAI) production analysis Lag time
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An analysis method of injection and production dynamic transient flow in a gas field storage facility
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作者 WANG Jieming LI Chun +4 位作者 SUN Junchang TANG Ligen ZHONG Rong LIU Xianshan ZHENG Shaojing 《Petroleum Exploration and Development》 CSCD 2022年第1期179-190,共12页
A dynamic transient flow analysis method considering complex factors such as the cyclic injection and production history in a gas field storage facility was established in view of the limitations of the existing metho... A dynamic transient flow analysis method considering complex factors such as the cyclic injection and production history in a gas field storage facility was established in view of the limitations of the existing methods for transient flow analysis and the characteristics of the injection-production operation of strongly heterogeneous gas reservoirs, and the corresponding theoretical charts were drawn. In addition, an injection-production dynamic transient flow analysis model named "three points and two stages" suitable for an underground gas storage(UGS) well with alternate working conditions was proposed. The "three points" refer to three time points during cyclic injection and production, namely, the starting point of gas injection for UGS construction, the beginning and ending points of the injection-production analysis stage;and the "two stages" refer to historical flow stage and injection-production analysis stage. The study shows that the dimensionless pseudo-pressure and dimensionless pseudo-pressure integral curves of UGS well flex downward in the early stage of the injection and production process, and the dimensionless pseudo-pressure integral derivative curve is convex during the gas production period and concave during the gas injection period, and the curves under different flow histories have atypical features. The new method present in this paper can analyze transient flow of UGS accurately. The application of this method to typical wells in Hutubi gas storage shows that the new method can fit the pressure history accurately, and obtain reliable parameters and results. 展开更多
关键词 gas field storage facility injection and production performance alternate working conditions transient flow analysis theoretical chart
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Injection-production parameters optimization research SAGD production stage
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作者 Fu Yu Qu Wenchi Song Xin 《International Journal of Technology Management》 2014年第9期119-120,共2页
Steam assisted gravity drainage (SAGD) technology has been industrialized popularization and application in our country, according to the characteristics of Xing group I SAGD experimental zone in liaohe oilfield, SA... Steam assisted gravity drainage (SAGD) technology has been industrialized popularization and application in our country, according to the characteristics of Xing group I SAGD experimental zone in liaohe oilfield, SAGD production stage injection-production parameters such as the operating pressure, Sub - Cool control, steam injection rate, steam dryness, production factor are studied and selected. 展开更多
关键词 injection-production parameters PRESSURE steam injection rate steam quality production factor
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Study on Injection-Production System Adjustment of Fault Block Reservoir Based on Equilibrium Displacement
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作者 Ming Yang Cunliang Chen +2 位作者 Yu Wang Xiaohui Wu Dong Ma 《Open Journal of Yangtze Oil and Gas》 2020年第2期35-45,共11页
This paper proposed a method of injection-production system adjustment to solve the problem that the water flooding effect was restricted because of the horizontal and vertical contradictions during the development pr... This paper proposed a method of injection-production system adjustment to solve the problem that the water flooding effect was restricted because of the horizontal and vertical contradictions during the development process of fault block reservoirs. Considering the heterogeneity of reservoir, the Buckley-Leverett water flooding theory was applied to establish the relationship between the recovery and cumulative water injection. In order to achieve the goal of vertically balanced recovery of each section, the calculation method of vertical sectional injection allocation was proposed. The planar triangular seepage unit was assumed and sweep coefficients of different oil-water distribution patterns were characterized using multi-flow tube method. In order to balance and maximize the plane sweep coefficient, the calculation method of plane production system optimization was obtained. Then the injection-production system stereoscopic adjustment method based on equilibrium displacement was proposed with vertical sectional injection allocation and plane production system optimization. This method was applied to injection and production adjustment of BZ oilfield in southern Bohai. The effect of water control and oil increase was obvious. This method can greatly improve the effect of water flooding of offshore fault block reservoirs with the adjustment of injection-production system. 展开更多
关键词 Fault Block Reservoir Equilibrium Displacement Vertical Sectional injection Allocation Planar production System Optimization Adjustment of injection-production System
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Stable Production Technology for Horizontal Well Development in Shallow Water Delta Oilfield of Bohai Bay, China
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作者 Guangyi Sun Qiongyuan Wu +2 位作者 Huijiang Chang Xiaoming Chen Shangqi Zhai 《Open Journal of Yangtze Oil and Gas》 2019年第4期258-269,共12页
BZ Oilfield is a medium-sized oilfield with shallow delta facies deposits in Bohai Bay of China,compared with fluvial and delta facies oilfields,there is no mature experience for reference of reservoir configuration,w... BZ Oilfield is a medium-sized oilfield with shallow delta facies deposits in Bohai Bay of China,compared with fluvial and delta facies oilfields,there is no mature experience for reference of reservoir configuration,well pattern arrangement and development model in offshore oilfields in China.In view of the difficulty in describing the reservoir configuration of shallow water delta,the single distributary sand dam in shallow water delta is characterized by well-seismic combination and multi-attribute constraints.The mathematical mechanism model of pinch-out position of sand body is established,fine characterization of BZ shallow water delta reservoir is put forward.The horizontal well pattern arrangement type for shallow water delta reservoir is proposed and the method of well pattern optimization based on vertical displacement theory is put forward.A method of inversion of reservoir connectivity using production dynamic data by numerical well testing is proposed and a new method for optimizing water injection rate in water injection wells is proposed aiming at the difficulty of recognizing injection-production connectivity of shallow water delta reservoirs.The fine configuration of BZ shallow water delta reservoir based on distributary sand dam is proposed,which guides the recognition of remaining oil distribution law.By deploying adjustment wells,the water flooding coincidence degree of actual drilling is 86% compared with that of pre-drilling prediction,which indicates that the research results of reservoir configuration can effectively guide the understanding of oilfield geology.Through the theoretical well arrangement type of vertical displacement of single sand body in horizontal wells of shallow water delta reservoir,a high water flooding recovery rate of 35% is achieved in primary well pattern.The connectivity coefficients of injection-production boundary of shallow water delta reservoir configuration are calculated,and the water injection distribution coefficients are obtained by normalizing the directional coefficients.This paper presents a configuration method based on multi-attribute fusion under the constraints of sedimentary process.In this paper,a shallow water delta reservoir configuration method based on multi-attribute fusion constrained by sedimentary process is proposed,and the injection-production connectivity coefficient and injection well distribution coefficient of the configuration boundary are calculated. 展开更多
关键词 production Stabilization TECHNOLOGY SHALLOW WATER Delta OILFIELD RESERVOIR Configuration Horizontal well Optimized WATER injection
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盐穴储气库井注采完井质量控制及监督要点
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作者 徐贵春 《石油工业技术监督》 2025年第1期8-12,共5页
盐穴储气库井注采完井是储气库建设和安全运行的关键,其质量直接影响了储气库的寿命和经济效益。通过分析注采完井过程中常见的管柱渗漏、井下工具失效、密封性检测及注采气井口试压不合格等问题。结合现场施工工艺,从注采完井前密封性... 盐穴储气库井注采完井是储气库建设和安全运行的关键,其质量直接影响了储气库的寿命和经济效益。通过分析注采完井过程中常见的管柱渗漏、井下工具失效、密封性检测及注采气井口试压不合格等问题。结合现场施工工艺,从注采完井前密封性检测、注采完井、注采完井后密封性检测3个施工环节,提出了具体的监督要点和管控措施,对盐穴储气库井注采完井作业进行有效干预,从而达到控制和提升盐穴储气库井注采完井质量的目的。 展开更多
关键词 注采完井 盐穴储气库 密封性检测 监督 质量
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注入生产水对储层岩心的堵塞机理及配伍性评价
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作者 孙浩天 檀银银 +3 位作者 席昊翔 马雪琼 张琦 苏碧云 《广州化工》 2025年第1期174-177,共4页
以中国南海西部某油田为例,综合考察了生产水中悬浮颗粒、油、化学离子等因素对油田储层岩心堵塞的影响。结果表明,注入水驱替体积越多,级别越低的岩心渗透率伤害程度越高。随着岩心级别的增加,化学堵塞对岩心的伤害程度逐级递减,100 m ... 以中国南海西部某油田为例,综合考察了生产水中悬浮颗粒、油、化学离子等因素对油田储层岩心堵塞的影响。结果表明,注入水驱替体积越多,级别越低的岩心渗透率伤害程度越高。随着岩心级别的增加,化学堵塞对岩心的伤害程度逐级递减,100 m D以下级别的岩心伤害率均超过20%。10~50 mD、50~100 mD、100~300 mD三种级别的岩心在不同平台中物理因素对岩心堵塞贡献分别是化学因素贡献占比的6.45、14.89、6.67、3.15倍。两块相同级别的天然岩心与人造岩心在经过驱替后渗透率保留率相差不大,说明了注入流体与岩石配伍性良好,但长期水驱对岩心(尤其是低渗岩心)的伤害较大。 展开更多
关键词 海上油田 生产水注入 岩心堵塞 流体与岩石配伍性
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海上边水驱砂岩油田合理油水井数比计算方法
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作者 陈肖 缪云 +3 位作者 李伟 谢明英 施浩 王伟峰 《岩性油气藏》 CAS 北大核心 2025年第1期194-200,共7页
基于物质平衡和极值原理,推导考虑边水能量影响下的合理油水井数比与合理地层压力的计算公式,并结合珠江口盆地新近系珠江组A油藏开发实践,对边水油藏合理油水井数比随含水率的变化规律进行详细研究。研究结果表明:①在计算不同含水率... 基于物质平衡和极值原理,推导考虑边水能量影响下的合理油水井数比与合理地层压力的计算公式,并结合珠江口盆地新近系珠江组A油藏开发实践,对边水油藏合理油水井数比随含水率的变化规律进行详细研究。研究结果表明:①在计算不同含水率阶段的合理油水井数比时,相较于传统计算方法,考虑边水能量影响的计算结果更接近矿场实践。②合理油水井数比受制于多种因素的综合影响,其中边水水侵系数对其影响最为显著,且水侵系数越大,不考虑水侵因素方法的计算误差越大。③为达到高产液量和天然能量高利用率,通过计算得到珠江口盆地A油藏现阶段合理油水井数比为1.97,该条件下,日注水量为18878 m^(3),天然水侵量为1693 m^(3)/d,地层压力为21.27 MPa,与数值模拟结果相近。 展开更多
关键词 边水驱油藏 物质平衡 合理油水井数比 合理地层压力 注采比 水侵系数 数值模拟 新近系 珠江口盆地
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基于超椭球T-S故障树的储气库注采井可靠性分析
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作者 米红甫 王莉莉 邵鹏 《安全与环境工程》 北大核心 2025年第1期118-126,156,共10页
为克服传统故障树在系统可靠性分析中的局限性,提出将超椭球T-S故障树分析法引入到储气库注采井可靠性分析中。首先,应用证据理论获得底事件发生故障的证据区间,以解决统计数据缺乏的问题,并将此证据区间作为故障树分析的输入数据;其次... 为克服传统故障树在系统可靠性分析中的局限性,提出将超椭球T-S故障树分析法引入到储气库注采井可靠性分析中。首先,应用证据理论获得底事件发生故障的证据区间,以解决统计数据缺乏的问题,并将此证据区间作为故障树分析的输入数据;其次,利用超椭球模型对证据区间加以约束,以解决计算结果相对保守的问题;再次,建立基于超椭球T-S故障树的仿真流程,并以某T-S故障树实例对仿真结果进行验证;最后,运用仿真流程对储气库注采井进行可靠性分析。结果表明:注采井发生半故障的失效概率区间是[5.2501×10^(-4),5.3125×10^(-4)],其失效等级为二级,即注采井发生半故障的事故描述是很少发生,注采井完全故障的失效概率区间是[2.1109×10^(-3),2.1361×10^(-3)],其失效等级为三级,即注采井发生完全故障的事故描述是偶尔发生;重要度分析表明当注采井处于半故障状态时,应优先关注盐岩蠕变过量、管材不耐蚀、注采气频繁等底事件;当其处于全故障状态时,应优先检修套管密封面泄漏、注采气频繁、水泥环密封泄漏等底事件。 展开更多
关键词 储气库注采井 可靠性分析 超椭球T-S故障树 重要度 失效概率
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Steam Flooding after Steam Soak in Heavy Oil Reservoirs through Extended-reach Horizontal Wells 被引量:1
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作者 Ning Zhengfu Liu Huiqing Zhang Hongling 《Petroleum Science》 SCIE CAS CSCD 2007年第2期71-74,共4页
This paper presents a new development scheme of simultaneous injection and production in a single horizontal well drilled for developing small block reservoirs or offshore reservoirs. It is possible to set special pac... This paper presents a new development scheme of simultaneous injection and production in a single horizontal well drilled for developing small block reservoirs or offshore reservoirs. It is possible to set special packers within the long completion horizontal interval to establish an injection zone and a production zone. This method can also be used in steam flooding after steam soak through a horizontal well. Simulation results showed that it was desirable to start steam flooding after six steam soaking cycles and at this time the oil/steam ratio was 0.25 and oil recovery efficiency was 23.48%. Steam flooding performance was affected by separation interval and steam injection rate. Reservoir numerical simulation indicated that maximum oil recovery would be achieved at a separation section of 40-50 m at steam injection rate of 100-180 t/d; and the larger the steam injection rate, the greater the water cut and pressure difference between injection zone and production zone. A steam injection rate of 120 t/d was suitable for steam flooding under practical injection-production conditions. All the results could be useful for the guidance of steam flooding projects. 展开更多
关键词 Heavy oil horizontal well steam soak steam flooding single well injection and production optimized design
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Deployment and Exploration of a Gas Storage Well Pattern Based on the Threshold Radius 被引量:2
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作者 TANG Ligen ZHU Weiyao +11 位作者 ZHU Huayin SUN Chunhui YANG Fenglai WANG Yan Li Xiaorui Li Haiming CHU Guangzhen WANG Jieming KONG Debin YUE Ming LIU Yuwei HUANG Kun 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2021年第2期630-637,共8页
To tackle the problem that wells that are deployed in a specific pattern based on the requirements of gas reservoir development are not suitable for gas storage,we have conducted concentrically circular injection and ... To tackle the problem that wells that are deployed in a specific pattern based on the requirements of gas reservoir development are not suitable for gas storage,we have conducted concentrically circular injection and production simulation experiments for gas storage,discovered the existence of a threshold radius,denoted by Rt,and derived the expression for Rt.Based on the analysis and discussion results,we propose a strategy for deploying gas storage wells in specific patterns.The expression for Rt shows that it is affected by factors such as the gas storage gas production/injection time,the upper pressure limit,the lower pressure limit,the bottomhole flow pressure at the ends of injection and production,the and permeability.The analysis and discussion results show that the Rt of a gas storage facility is much smaller than the Rt for gas reservoir development.In the gas storage facilities in China,the Rt for gas production is less than the Rt for the gas injection,and Rt increases with the difference in the operating pressure and with permeability K.Based on the characteristics of Rt,we propose three suggestions for gas storage well pattern deployment:(1)calculate Rt according to the designed functions of the gas storage facility and deploy the well pattern according to Rt;(2)deploy sparser,large-wellbore patterns in high-permeability areas and denser,small-wellbore patterns in high-permeability areas;and(3)achieve the gas injection well pattern by new drilling,and the gas production well pattern through a combination of the gas injection well pattern and old wells.By assessing a gas storage facility with a perfect well pattern after a number of adjustments,we found that the Rt of the 12 wells calculated in this paper is basically close to the corresponding actual radius,which validates our method.The results of this study provide a methodological basis for well pattern deployment in new gas storage construction. 展开更多
关键词 gas storage well deployment strategy gas injection well pattern gas production well pattern threshold radius
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Progress and prospects of oil and gas production engineering technology in China 被引量:3
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作者 ZHENG Xinquan SHI Junfeng +4 位作者 CAO Gang YANG Nengyu CUI Mingyue JIA Deli LIU He 《Petroleum Exploration and Development》 CSCD 2022年第3期644-659,共16页
This paper summarizes the important progress in the field of oil and gas production engineering during the"Thirteenth Five-Year Plan"period of China,analyzes the challenges faced by the current oil and gas p... This paper summarizes the important progress in the field of oil and gas production engineering during the"Thirteenth Five-Year Plan"period of China,analyzes the challenges faced by the current oil and gas production engineering in terms of technological adaptability,digital construction,energy-saving and emission reduction,and points out the future development direction.During the"Thirteenth Five-Year Plan"period,series of important progresses have been made in five major technologies,including separated-layer injection,artificial lift,reservoir stimulation,gas well de-watering,and workover,which provide key technical support for continuous potential tapping of mature oilfields and profitable production of new oilfields.Under the current complex international political and economic situation,oil and gas production engineering is facing severe challenges in three aspects:technical difficulty increases in oil and gas production,insignificant improvements in digital transformation,and lack of core technical support for energy-saving and emission reduction.This paper establishes three major strategic directions and implementation paths,including oil stabilization and gas enhancement,digital transformation,and green and low-carbon development.Five key research areas are listed including fine separated-layer injection technology,high efficiency artificial lift technology,fine reservoir stimulation technology,long term gas well de-watering technology and intelligent workover technology,so as to provide engineering technical support for the transformation,upgrading and high-quality development of China’s oil and gas industry. 展开更多
关键词 oil and gas production engineering separated-layer injection artificial lift reservoir stimulation gas well de-watering WORKOVER digital transformation low carbon economy
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Kansei Engineering Applied to the Form Design of Injection Molding Machines 被引量:1
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作者 Ming-Shyan Huang Hung-Cheng Tsai Wei-Wen Lai 《Open Journal of Applied Sciences》 2012年第3期198-208,共11页
This study investigated the relationship between a subject’s evaluation of injection molding machines (IMMs) and formal design features using Kansei engineering. This investigation used 12 word pairs to evaluate the ... This study investigated the relationship between a subject’s evaluation of injection molding machines (IMMs) and formal design features using Kansei engineering. This investigation used 12 word pairs to evaluate the IMM configurations and employed the semantic differential method to explore the perception of 60 interviewees of 12 examples. The relationship between product feature design and corresponding words was derived by multiple regression analysis. Factor analysis reveals that the 12 examples can be categorized as two styles—advanced style and succinct style. For the advanced style, an IMM should use a rectangular form for the clamping-unit cover and a full-cover for the injection-unit. For the succinct style, the IMM configuration should use a beveled form for the safety cover and a vertical rectangular form for the clamping-unit cover. Quantitative data and suggested guidelines for the relationship between design features and interviewee evaluations are useful to product designers when formulating design strategies. 展开更多
关键词 CATEGORY Classification Kansei Engineering injection MOLDING MACHINES Product FEATURE Design SEMANTIC Differential Method
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TREATMENT FOR SEQUELAE OF NEURALGIA AFTER THE HERPES ZOSTER WITH COMBINED ACUPUNCTURE AND INJECTION
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《World Journal of Acupuncture-Moxibustion》 1994年第2期32-33,共2页
The author treated 16 cases of sequelae of neuralgia after herpes zoster withacupuncture, moxibustion and point injection in the affected region, and all cases were cured.
关键词 NEURALGIA HERPES ZOSTER ACUPUNCTURE & moxibustion Point injection
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Development of Integrated Simulation System for Plastic Injection Molding 被引量:1
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作者 CHENGXue-wen LIDe-qun ZHOUHua-min 《Computer Aided Drafting,Design and Manufacturing》 2005年第1期9-15,共7页
Numerical simulation of injection molding have had success in predicting the behavior of polymer melt in extremely complicated geometries. Most of the current numerical solutions are based on finite-element/finite-dif... Numerical simulation of injection molding have had success in predicting the behavior of polymer melt in extremely complicated geometries. Most of the current numerical solutions are based on finite-element/finite-difference/boundary-element/volume-control methods and the surface model. This paper discusses the development of an integrated CAE system for injection molding in detail, and presents the mathematics for numerical simulation of filling, packing, cooling, stress and warpage in injection molding. The developed system named as HsCAE3D is introduced at the end. 展开更多
关键词 injection molding numerical simulation CAD/CAE/CAM object-oriented analysis & design
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Simulation of pore space production law and capacity expansion mechanism of underground gas storage
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作者 LIU Tao LI Yiqiang +7 位作者 DING Guosheng WANG Zhengmao SHI Lei LIU Zheyu TANG Xiang CAO Han CAO Jinxin HUANG Youqing 《Petroleum Exploration and Development》 CSCD 2022年第6期1423-1429,共7页
One-dimensional gas injection storage building and one-cycle injection-production modeling experiment,and two-dimensional flat core storage building and multi-cycle injection-production modeling experiment were carrie... One-dimensional gas injection storage building and one-cycle injection-production modeling experiment,and two-dimensional flat core storage building and multi-cycle injection-production modeling experiment were carried out using one-dimensional long core and large two-dimensional flat physical models to find out the effects of reservoir physical properties and injection-production balance time on reservoir pore utilization efficiency,effective reservoir capacity formation and capacity-reaching cycle.The results show that reservoir physical properties and formation water saturation are the main factors affecting the construction and operation of gas-reservoir type underground gas storage.During the construction and operation of gas-reservoir type gas storage,the reservoir space can be divided into three types of working zones:high efficiency,low efficiency and ineffective ones.The higher the reservoir permeability,the higher the pore utilization efficiency is,the smaller the ineffective working zone is,or there is no ineffective working zone;the smaller the loss of injected gas is,and the higher the utilization rate of pores is.The better the reservoir physical properties,the larger the reservoir space and the larger the final gas storage capacity is.The higher the water saturation of the reservoir,the more the gas loss during gas storage capacity building and operation is.Optimizing injection-production regime to discharge water and reduce water saturation is an effective way to reduce gas loss in gas storage.In the process of multiple cycles of injection and production,there is a reasonable injection-production balance time,further extending the injection-production balance period after reaching the reasonable time has little contribution to the expansion of gas storage capacity. 展开更多
关键词 gas reservoir-type underground gas storage multi-cycle injection and production injection-production equilibrium time pore utilization efficiency effective gas storage volume
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Optimization of production well patterns for natural gas hydrate reservoir: Referring to the results from production tests and numerical simulations
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作者 Lang-feng Mu Hao-tian Liu +2 位作者 Chi Zhang Yi Zhang Hai-long Lu 《China Geology》 2025年第1期39-57,共19页
Natural gas hydrate is a clean energy source with substantial resource potential.In contrast to conventional oil and gas,natural gas hydrate exists as a multi-phase system consisting of solids,liquids,and gases,which ... Natural gas hydrate is a clean energy source with substantial resource potential.In contrast to conventional oil and gas,natural gas hydrate exists as a multi-phase system consisting of solids,liquids,and gases,which presents unique challenges and complicates the mechanisms of seepage and exploitation.Both domestic and international natural gas hydrate production tests typically employ a single-well production model.Although this approach has seen some success,it continues to be hindered by low production rates and short production cycles.Therefore,there is an urgent need to explore a new well network to significantly increase the production of a single well.This paper provides a comprehensive review of the latest advancements in natural gas hydrate research,including both laboratory studies and field tests.It further examines the gas production processes and development outcomes for single wells,dual wells,multi-branch wells,and multi-well systems under conditions of depressurization,thermal injection,and CO_(2) replacement.On this basis,well types and well networks suitable for commercial exploitation of natural gas hydrate were explored,and the technical direction of natural gas hydrate development was proposed.The study shows that fully exploiting the flexibility of complex structural wells and designing a well network compatible with the reservoir is the key to improving production from a single well.Moreover,multi-well joint exploitation is identified as an effective strategy for achieving large-scale,efficient development of natural gas hydrate. 展开更多
关键词 Gas Hydrate production Depressurization Heat injection Replacement Multi-Branch well well patterns Hydrate exploration engineering
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