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Sulfur deposition in sour gas reservoirs:laboratory and simulation study 被引量:4
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作者 Xiao Guo Zhimin Du +2 位作者 Xuefeng Yang Yong Zhang Dekui Fu 《Petroleum Science》 SCIE CAS CSCD 2009年第4期405-414,共10页
Sulfur deposition in the formation,induced by a reduction in the solubility of the sulfur in the gas phase,may significantly reduce the in flow performance of sour gas wells and some wells in sour gas reservoirs have ... Sulfur deposition in the formation,induced by a reduction in the solubility of the sulfur in the gas phase,may significantly reduce the in flow performance of sour gas wells and some wells in sour gas reservoirs have even become completely plugged with deposited sulfur within several months.Accurate prediction and effective management of sulfur deposition are crucial to the economic viability of sour gas reservoirs.In this paper,a dynamic flow experiment was carried out to investigate formation damage resulting from sulfur deposition using an improved experimental method.The core sample was extracted from the producing interval of the LG2 well,LG gas field in the Sichuan Basin.The experimental temperature was 26 oC and the initial pressure was 19 MPa.The displacement pressure continuously decreased from 19 to 10 MPa,and the depletion process lasted 15 days.Then the core was removed and dried.The core mass and core permeability were measured before and after experiments.Experimental results indicated that the core mass increased from 48.372 g before experiment to 48.386 g afterwards,while the core permeability reduced from 0.726 to 0.608 md during the experiment.Then the core was analyzed with a scanning electron microscope(SEM) and energy-dispersive X-ray mapping.The deposition pattern and micro-distribution of elemental sulfur was observed and the deposited elemental sulfur distributed as a film around the pore surface.In addition,a preliminary three-dimensional,multi-component model was developed to evaluate the effect of sulfur deposition on production performance,and the effect of production rate on sulfur deposition was also investigated.Simulation results indicated that the stable production time would be shortened and the gas production rate would be decreased once sulfur deposited in the formation.The increase in deposited sulfur at high flow rates may be attributed to a bigger pressure drop than that at low gas flow rates.Gas production rate has a severe effect on sulfur saturation in the grid of producing well located in sour gas reservoir.The work suggests sulfur deposition should be considered to correctly predict production performance and gas production rate should be optimized in order to control or retard sulfur deposition during the development of sour gas reservoir. 展开更多
关键词 SOUR gas reservoir sulfur DEPOSITION experiment numerical simulation formation DAMAGE
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Geochemical characteristics and genetic mechanism of the high-N2 shale gas reservoir in the Longmaxi Formation, Dianqianbei Area, China 被引量:3
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作者 Ji-Lin Li Ting-Shan Zhang +6 位作者 Yan-Jun Li Xing Liang Xin Wang Jie-Hui Zhang Zhao Zhang Hong-Lin Shu Da-Qian Rao 《Petroleum Science》 SCIE CAS CSCD 2020年第4期939-953,共15页
As an important pilot target for shale gas exploration and development in China,the Longmaxi Formation shale in the Dianqianbei Area is characterized by high content of nitrogen,which severely increases exploration ri... As an important pilot target for shale gas exploration and development in China,the Longmaxi Formation shale in the Dianqianbei Area is characterized by high content of nitrogen,which severely increases exploration risk.Accordingly,this study explores the genesis of shale gas reservoir and the mechanism of nitrogen enrichment through investigating shale gas compositions,isotope features,and geochemical characteristics of associated gases.The high-nitrogen shale gas reservoir in the Longmaxi Formation is demonstrated to be a typical dry gas reservoir.Specifically,the alkane carbon isotope reversal is ascribed to the secondary cracking of crude oil and the Rayleigh fractionation induced by the basalt mantle plume.Such a thermogenic oil-type gas reservoir is composed of both oil-cracking gas and kerogen-cracking gas.The normally high nitrogen content(18.05%-40.92%) is attributed to organic matter cracking and thermal ammoniation in the high-maturity stage.Specifically,the high heat flow effect of the Emeishan mantle plume exacerbates the thermal cracking of organic matter in the Longmaxi Formation shale,accompanied by nitrogen generation.In comparison,the abnormally high nitrogen content(86.79%-98.54%) is ascribed to the communication between the atmosphere and deep underground fluids by deep faults,which results in hydrocarbon loss and nitrogen intrusion,acting as the key factor for deconstruction of the primary shale gas reservoir.Results of this study not only enrich research on genetic mechanism of high-maturity N_@ shale gas reservoirs,but also provide theoretical guidance for subsequent gas reservoir resource evaluation and well-drilling deployment in this area. 展开更多
关键词 Longmaxi Formation Shale gas reservoir ISOTOPE high nitrogen content Genetic mechanism
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Geological characteristics and high production control factors of shale gas reservoirs in Silurian Longmaxi Formation, southern Sichuan Basin, SW China 被引量:2
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作者 MA Xinhua XIE Jun +1 位作者 YONG Rui ZHU Yiqing 《Petroleum Exploration and Development》 2020年第5期901-915,共15页
Marine shale gas resources have great potential in the south of the Sichuan Basin in China.At present,the high-quality shale gas resources at depth of 2000–3500 m are under effective development,and strategic breakth... Marine shale gas resources have great potential in the south of the Sichuan Basin in China.At present,the high-quality shale gas resources at depth of 2000–3500 m are under effective development,and strategic breakthroughs have been made in deeper shale gas resources at depth of 3500–4500 m.To promote the effective production of shale gas in this area,this study examines key factors controlling high shale gas production and presents the next exploration direction in the southern Sichuan Basin based on summarizing the geological understandings from the Lower Silurian Longmaxi Formation shale gas exploration combined with the latest results of geological evaluation.The results show that:(1)The relative sea depth in marine shelf sedimentary environment controls the development and distribution of reservoirs.In the relatively deep water area in deep-water shelf,grade-I reservoirs with a larger continuous thickness develop.The relative depth of sea in marine shelf sedimentary environment can be determined by redox conditions.The research shows that the uranium to thorium mass ratio greater than 1.25 indicates relatively deep water in anoxic reduction environment,and the uranium to thorium mass ratio of 0.75–1.25 indicates semi-deep water in weak reduction and weak oxidation environment,and the uranium to thorium mass ratio less than 0.75 indicates relatively shallow water in strong oxidation environment.(2)The propped fractures in shale reservoirs subject to fracturing treatment are generally 10–12 m high,if grade-I reservoirs are more than 10 m in continuous thickness,then all the propped section would be high-quality reserves;in this case,the longer the continuous thickness of penetrated grade-I reservoirs,the higher the production will be.(3)The shale gas reservoirs at 3500–4500 m depth in southern Sichuan are characterized by high formation pressure,high pressure coefficient,well preserved pores,good pore structure and high proportion of free gas,making them the most favorable new field for shale gas exploration;and the pressure coefficient greater than 1.2 is a necessary condition for shale gas wells to obtain high production.(4)High production wells in the deep shale gas reservoirs are those in areas where Long11-Long13 sub-beds are more than 10 m thick,with 1500 m long horizontal section,grade-I reservoirs penetration rate of over 90%,and fractured by dense cutting+high intensity sand injection+large displacement+large liquid volume.(5)The relatively deep-water area in the deep-water shelf and the area at depth of 3500–4500 m well overlap in the southern Sichuan,and the overlapping area is the most favorable shale gas exploration and development zones in the southern Sichuan in the future.With advancement in theory and technology,annual shale gas production in the southern Sichuan is expected to reach 450×108 m3. 展开更多
关键词 southern Sichuan Basin Lower Silurian Longmaxi Formation deeply buried shale gas high production control factors deep water and deep burial shale gas reservoir
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Numerical Simulation of Oil and Gas Two-Phase Flow in Deep Condensate Gas Reservoirs in Bohai Buried Hills
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作者 Zhennan Gao Xianbo Luo +2 位作者 Lei Zhang Qi Cheng Yingxu He 《Open Journal of Applied Sciences》 2023年第11期2068-2079,共12页
The BZ19-6 gas field is characterized by high temperature and high pressure (HTHP), high condensate content, little difference between the formation pressure and dew point pressure, and large amount of reverse condens... The BZ19-6 gas field is characterized by high temperature and high pressure (HTHP), high condensate content, little difference between the formation pressure and dew point pressure, and large amount of reverse condensate liquid. During the early stage of depletion development, the production gas-oil ratio (GOR) and production capacity remain relatively stable, which is inconsistent with the conventional reverse condensate seepage law. In view of the static and dynamic conflict in development and production, indoor high-temperature and high-pressure PVT experiment was carried out to reveal the mist-like condensation phenomenon of fluids in the BZ19-6 formation. And the seepage characteristics of condensate gas reservoirs with various degrees of depletion under the condition of HTHP were analyzed based on production performance. The change rule of fluid phase state was analyzed in response to the characterization difficulties of the seepage mechanism. The fluid state was described using the miscible mechanism. And the interphase permeability interpolation coefficient was introduced based on interfacial tension. By doing so, the accurate characterization of the “single-phase flow of condensate gas-near-miscible mist-like quasi single-phase flow-oil-gas two-phase flow” during the development process was achieved. Then the accurate fitting of key indicators for oilfield development was completed, and the distribution law of formation pressure and the law of condensate oil precipitation under different reservoir conditions are obtained. Based on research results, the regulation strategy of variable flow rate production was developed. Currently, the work system has been optimized for 11 wells, achieving a “zero increase” in the GOS of the gas field and an annual oil increase of 22,000 cubic meters. 展开更多
关键词 high Temperature and high Pressure Condensate gas reservoirs Mist Flow Characterization of Seepage Flow History Match Production Regulation
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Enhancement of a foaming formulation with a zwitterionic surfactant for gas mobility control in harsh reservoir conditions 被引量:1
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作者 Miguel Angel Roncoroni Pedro Romero +5 位作者 Jesús Montes Guido Bascialla Rosario Rodríguez Ramón Rodríguez Pons-Esparver Luis Felipe Mazadiego María Flor García-Mayoral 《Petroleum Science》 SCIE CAS CSCD 2021年第5期1409-1426,共18页
This work presents the design of a robust foam formulation that tolerates harsh reservoir conditions(high salinity,high divalent ion concentration,high temperature,light oil,and hydrocarbon injection gas)in a sandston... This work presents the design of a robust foam formulation that tolerates harsh reservoir conditions(high salinity,high divalent ion concentration,high temperature,light oil,and hydrocarbon injection gas)in a sandstone reservoir.For this,we selected anionic Alpha Olefin Sulfonate(AOS)surfactants and studied their synergistic effects in mixtures with zwitterionic betaines to enhance foam performance.The laboratory workflow used to define the best formulation followed a de-risking approach in three consecutive phases.First,(phase 1)the main surfactant(AOS)was selected among a series of commercial candidates in static conditions.Then,(phase 2)the betaine booster to be combined with the previously selected AOS was chosen and their ratio optimized in static conditions.Subsequently,(phase 3)the surfactant/booster ratio was optimized under dynamic conditions in a porous medium in the absence and the presence of oil.As a result of this study,a mixture of an AOS C14-C16 and cocamidopropyl hydroxysultaine(CAPHS)was selected as the one having the best performance.The designed formulation was proven to be robust in a wide range of conditions.It generated a strong and stable foam at reservoir conditions,overcoming variations in salinity and foam quality,and tolerated the presence of oil. 展开更多
关键词 gas mobility control Foam enhanced oil recovery(EOR) Foam stability high temperature high salinity reservoir Surfactant formulation
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Progress and development directions of stimulation techniques for ultra-deep oil and gas reservoirs
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作者 LEI Qun XU Yun +7 位作者 YANG Zhanwei CAI Bo WANG Xin ZHOU Lang LIU Huifeng XU Minjie WANG Liwei Li Shuai 《Petroleum Exploration and Development》 CSCD 2021年第1期221-231,共11页
By reviewing the development history of stimulation techniques for deep/ultra-deep oil and gas reservoirs,the new progress in this field in China and abroad has been summed up,including deeper understanding on formati... By reviewing the development history of stimulation techniques for deep/ultra-deep oil and gas reservoirs,the new progress in this field in China and abroad has been summed up,including deeper understanding on formation mechanisms of fracture network in deep/ultra-deep oil and gas reservoir,performance improvement of fracturing fluid materials,fine stratification of ultra-deep vertical wells,and mature staged multi-cluster fracturing technique for ultra-deep and highly deviated wells/horizontal wells.In light of the exploration and development trend of ultra-deep oil and gas reservoirs in China,the requirements and technical difficulties in ultra-deep oil and gas reservoir stimulation are discussed:(1)The research and application of integrated geological engineering technology is difficult.(2)The requirements on fracturing materials for stimulation are high.(3)It is difficult to further improve the production in vertical profile of the ultra-deep and hugely thick reservoirs.(4)The requirements on tools and supporting high-pressure equipment on the ground for stimulation are high.(5)It is difficult to achieve efficient stimulation of ultra-deep,high-temperature and high-pressure wells.(6)It is difficult to monitor directly the reservoir stimulation and evaluate the stimulation effect accurately after stimulation.In line with the complex geological characteristics of ultra-deep oil and gas reservoirs in China,seven technical development directions are proposed:(1)To establish systematic new techniques for basic research and evaluation experiments;(2)to strengthen geological research and improve the operational mechanism of integrating geological research and engineering operation;(3)to develop high-efficiency fracturing materials for ultra-deep reservoirs;(4)to research separated layer fracturing technology for ultra-deep and hugely thick reservoirs;(5)to explore fracture-control stimulation technology for ultra-deep horizontal well;(6)to develop direct monitoring technology for hydraulic fractures in ultra-deep oil and gas reservoirs;(7)to develop downhole fracturing tools with high temperature and high pressure tolerance and supporting wellhead equipment able to withstand high pressure. 展开更多
关键词 ultra-deep oil and gas reservoir high temperature and high pressure reservoir stimulation technical status technical difficulties development direction
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考虑硫沉积影响的水平井稳产能力预测
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作者 王勇飞 刘言 +1 位作者 梁中红 向祖平 《断块油气田》 CAS CSCD 北大核心 2024年第1期140-146,共7页
水平井是高效开发高含硫气藏的主要井型。高含硫气藏在开发过程中,井筒附近压力下降,导致水平井井筒周围形成不规则的硫沉积区,严重的可能导致部分井筒单元没有气体流入。为了更好地对该类气藏进行气井稳产能力预测,构建了水平井分段渗... 水平井是高效开发高含硫气藏的主要井型。高含硫气藏在开发过程中,井筒附近压力下降,导致水平井井筒周围形成不规则的硫沉积区,严重的可能导致部分井筒单元没有气体流入。为了更好地对该类气藏进行气井稳产能力预测,构建了水平井分段渗流双区复合物理模型,建立了不稳定渗流数学模型,并采用Laplace积分变换、边界元和压降叠加对井底压力进行了求解。结合不稳定渗流数学模型与高含硫气藏物质平衡方程,构建气井稳产能力预测模型,分析了不同参数对稳产时间和井底压力的影响。研究结果表明:含硫饱和度、堵塞段与渗流段长度比值和水平段长度等对稳产时间和井底压力有着非常明显的影响,含硫饱和度和水平段长度与气井稳产时间呈指数变化关系。通过对元坝气藏某水平井进行实例分析,验证了该方法的准确性,该模型和方法的建立为高含硫气藏水平井稳产能力预测提供了理论依据。 展开更多
关键词 高含硫气藏 硫沉积 水平井 边界元 稳产能力
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液硫沉积吸附影响下高含硫气藏储层精细定量表征
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作者 李童 马永生 +3 位作者 曾大乾 李倩 赵光 孙宁 《石油勘探与开发》 EI CAS CSCD 北大核心 2024年第2期367-379,共13页
为明确液硫沉积吸附对高含硫气藏储层的影响规律,选取代表3种典型碳酸盐岩孔隙结构的天然岩心,以高温高压岩心驱替实验为基础,综合采用核磁共振横向弛豫时间谱与成像技术、全直径岩心X射线CT扫描技术、基础物性测试和场发射扫描电镜成... 为明确液硫沉积吸附对高含硫气藏储层的影响规律,选取代表3种典型碳酸盐岩孔隙结构的天然岩心,以高温高压岩心驱替实验为基础,综合采用核磁共振横向弛豫时间谱与成像技术、全直径岩心X射线CT扫描技术、基础物性测试和场发射扫描电镜成像等手段,对原始状态、注硫后和气驱后3个稳定状态的岩心进行精细定量表征。研究表明:硫沉积吸附引起的孔隙体积损失主要来源于1000μm以上的中大孔;液硫在较小孔隙空间中的吸附沉积能力更强,对原始孔隙结构较差的储层伤害更大;3类碳酸盐岩储层的孔隙结构呈现多重分形特征,孔隙结构越差,液硫沉积吸附引起的内部空间孔隙分布改变越大,非均质性越强;液硫沉积吸附引起岩石孔径分布、孔隙连通性和非均质性变化,进而改变储层物性,注硫及气驱后物性较好的Ⅰ类储层渗透率下降16%,而物性较差的Ⅱ、Ⅲ类储层渗透率下降90%以上,伤害程度极大,说明初始物性越差,液硫沉积吸附伤害越大;液硫以絮状、蛛网状或网膜状吸附沉积于不同类型的孔隙空间,引起储层孔隙结构和物性的改变。 展开更多
关键词 高含硫气藏 液硫 吸附沉积 孔隙结构 物性特征 储层表征
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高含硫气井元素硫溶解度与硫沉积预测模型研究
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作者 王国锋 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第1期46-59,共14页
为了正确评估高含硫气井的储层硫堵伤害,通过收集整理大量酸性气体硫溶解度实验数据,建立了考虑溶质压力特性的典型高含硫气藏条件下元素硫溶解度预测模型。在此基础上,根据气水渗流理论与硫溶解度随压力变化量函数,推导了元素硫沉积量... 为了正确评估高含硫气井的储层硫堵伤害,通过收集整理大量酸性气体硫溶解度实验数据,建立了考虑溶质压力特性的典型高含硫气藏条件下元素硫溶解度预测模型。在此基础上,根据气水渗流理论与硫溶解度随压力变化量函数,推导了元素硫沉积量化表征数学模型;采用四川盆地某高含硫边水气藏与典型硫堵气井的基础静态与动态资料等,定量分析了影响气井硫堵状况的因素与储层硫饱和度的变化规律,探讨了缓解储层硫堵状况的技术思路与对策。研究结果表明:(1)通过验证,证明了本文建立的硫溶解度预测模型具有更好的预测性能,预测结果也更可靠;(2)气井硫堵程度受制于多种因素的综合影响,在相同的生产时间下,较大的气井日产气量、储层(初始)含水饱和度、非达西流常数,较小的储层有效厚度、储层(初始)孔隙度与渗透率、井底流压,能够造成更严重的气井硫沉积堵塞状况;(3)随着气井生产时间的增加,气井硫堵区域逐渐向井筒外围地层扩展。在气藏不同开发阶段,应该采取不同的硫沉积治理思路。开发初期,建议采用“控速为先,治理为辅”的治硫思路;开发中期,采取“控治并重”的思路;开发后期,应以经济效益为先,维持气井带液生产是该阶段的重点工作。 展开更多
关键词 高含硫气藏 含硫气井 硫溶解度 硫沉积 预测模型
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四川盆地普光高含硫气田长周期高产稳产关键技术 被引量:7
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作者 曾大乾 张庆生 +4 位作者 李童 宿亚仙 张睿 张诚 彭松 《天然气工业》 EI CAS CSCD 北大核心 2023年第1期65-75,共11页
普光气田是我国探明储量最大的高含硫气田,储层以礁滩相为主,具有非均质性强、边水能量强、高含硫等特点,面临礁滩储层地震预测精度低、气藏边水推进快、产能快速递减、硫沉积逐步析出、气井产能和气藏储量动用效果差等一系列技术难点... 普光气田是我国探明储量最大的高含硫气田,储层以礁滩相为主,具有非均质性强、边水能量强、高含硫等特点,面临礁滩储层地震预测精度低、气藏边水推进快、产能快速递减、硫沉积逐步析出、气井产能和气藏储量动用效果差等一系列技术难点和挑战。为此,针对普光气田开发面临的难点和挑战,全面、系统总结了自“十三五”以来,为实现气田长周期高产稳产而开展的技术攻关与矿场实践。研究结果表明:①建立了台内滩储层预测岩石物理量版,提出了有效动用对策,研发了“自转向清洁酸+降阻滑溜水+缝内暂堵”造复杂缝酸压工艺,实现了超深礁滩相低品位台内滩储层有效动用;②建立了礁滩相储层气水前缘运动方程,研发了新型抗硫三元复合泡排剂、高抗硫超高膨胀率比桥塞,设计了过油管注塞堵水工艺,实现了高含硫气井全生命周期控水稳气;③揭示了高含硫天然气单质硫析出机理,建立了高含硫气藏硫沉积分布模型,研发了快速分散型溶硫剂,配套射流冲洗工艺,形成了井筒硫沉积治理技术。结论认为,普光气田目前边水突进导致剩余气分布复杂、硫沉积逐渐从井筒扩展到地层、井口压力接近外输压力,下一步需要开展剩余气精细描述与挖潜、精准堵水、储层硫沉积治理、集输系统增压开采等技术攻关,以期进一步改善气田开发效果进而提高采收率。 展开更多
关键词 普光高含硫气田 低品位储层 有效动用 全生命周期 控水稳气 硫沉积 精细描述与挖潜 增压开采
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普光气田气井硫堵动态特征及治理对策研究 被引量:1
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作者 付德奎 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2023年第5期119-130,共12页
普光气田属于特高含H_(2)S气田,随着气田的开发,地层压力逐渐降低,单质硫逐渐从天然气中析出,附着沉积在地面设备、集输管线以及油管内壁,造成硫沉积堵塞。目前,普光气田地面集输流程和井筒均已出现硫沉积与堵塞,严重影响气井正常生产... 普光气田属于特高含H_(2)S气田,随着气田的开发,地层压力逐渐降低,单质硫逐渐从天然气中析出,附着沉积在地面设备、集输管线以及油管内壁,造成硫沉积堵塞。目前,普光气田地面集输流程和井筒均已出现硫沉积与堵塞,严重影响气井正常生产。针对气井硫沉积堵塞动态特征不清,缺乏相应的硫堵治理对策的难题,首先,开展单质硫在天然气中的含量实验研究,明确了原始地层条件下天然气中单质硫的含量,不同压力和温度条件下的单质硫饱和溶解度;其次,研究了地面流程硫沉积堵塞和井筒硫沉积堵塞的动态特征及变化规律,提出了地面硫堵和井筒硫堵的治理对策,评价了各类措施的效果及现场适应性;最后,根据理论研究及现场实践,分析认为硫堵会逐渐发展到储层,前瞻性地提出了储层解硫堵的对策。研究成果对高含硫气井的地面-井筒-储层硫堵综合治理具有很强的指导意义。 展开更多
关键词 高含硫 硫沉积 硫堵 地面 井筒 储层 对策
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川东北地区高含硫气井地质工程一体化技术及其应用
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作者 青春 文华国 +7 位作者 张航 曾汇川 陈仕臻 朱海燕 陈鹏举 蒋东 张洁伟 肖俊 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2023年第4期431-444,485,共15页
四川盆地开江梁平海槽东侧飞仙关组碳酸盐岩气藏的勘探开发目前面临着高含硫、高压、高温、钻井效率低等挑战,迫切需要解决安全钻井、高效提速等难题,使用常规钻探方法具有一定风险且效率较低。以川东北高含硫地区气田为研究对象,从储... 四川盆地开江梁平海槽东侧飞仙关组碳酸盐岩气藏的勘探开发目前面临着高含硫、高压、高温、钻井效率低等挑战,迫切需要解决安全钻井、高效提速等难题,使用常规钻探方法具有一定风险且效率较低。以川东北高含硫地区气田为研究对象,从储层品质、钻井品质、完井品质三方面着手,运用地质工程一体化思路与技术对气藏开发进行研究。开展综合地质研究和模型建立,优化钻前地质设计和井位部署;从钻井过程中遇到的复杂情况进行分析,解决强研磨地层、多弱面地层、高压盐水层的钻井安全提速问题;针对含气目的层,优化酸化、压裂提产方案,实现高含硫气藏的安全高效开采。研究结果表明:地质工程一体化技术的成功应用,为特殊地质条件引起的井涌、井塌、井漏、高抗钻及难压裂等工程问题提供了有效预测,保障了高含硫气藏方案设计及实施的科学决策依据,缩短了钻井和建产周期,初步实现了气藏开发初期的效益突破。 展开更多
关键词 地质工程一体化 钻遇地层 钻完井 高含硫气藏 铁山坡 川东北
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高含硫天然气水合物生长特性实验研究
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作者 汪洋 青春 +4 位作者 任阳 李杨 李延霞 邵子越 申小冬 《石油与天然气化工》 CAS CSCD 北大核心 2023年第4期89-93,共5页
目的解决高含硫气田开发过程中在井筒和管道中形成的天然气水合物造成冰堵的问题。方法在恒温、恒容条件下,采用耐高压哈氏合金釜研究了高含硫天然气水合物宏观生长速率及气田水矿物离子对其的影响情况,同时,采用直接观察法从俯视角度... 目的解决高含硫气田开发过程中在井筒和管道中形成的天然气水合物造成冰堵的问题。方法在恒温、恒容条件下,采用耐高压哈氏合金釜研究了高含硫天然气水合物宏观生长速率及气田水矿物离子对其的影响情况,同时,采用直接观察法从俯视角度研究了压力、气田水矿物离子及溶液形态对气液界面高含硫天然气水合物生长过程形貌特征、生长特性及延展规律的影响。结果气田水中矿物离子的存在可降低水合物的生长速率,同时改变水合物形貌。在气液界面,水合物从成核点以二维拓展模式向四周生长。升高压力对水合物形貌影响较小,但会提高水合物的生长速率。结论分析认为,矿物离子主要是通过离子化作用来降低水的活性,从而影响水合物的生长过程。研究结果对水合物安全防治和高含硫气田的顺利开发具有理论指导意义。 展开更多
关键词 高含硫气藏 天然气水合物 冰堵 生长速率 晶体形态
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碳酸盐岩气藏注CO_(2)埋存及提高采收率机理研究进展
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作者 郭肖 冯金 +3 位作者 王鹏鲲 王作豪 陈祖伟 李涛 《断块油气田》 CAS CSCD 北大核心 2023年第6期888-894,共7页
四川盆地碳酸盐岩气藏具有分布广、埋藏深、高温高压、含H2S、边底水活跃、非均质性强等特征,若能将CO_(2)注入到高含硫碳酸盐岩有水气藏中,可以达到CO_(2)埋存和提高天然气采收率双重目的;但常规实验和经典理论难以揭示其复杂机理。为... 四川盆地碳酸盐岩气藏具有分布广、埋藏深、高温高压、含H2S、边底水活跃、非均质性强等特征,若能将CO_(2)注入到高含硫碳酸盐岩有水气藏中,可以达到CO_(2)埋存和提高天然气采收率双重目的;但常规实验和经典理论难以揭示其复杂机理。为此,文中分析了高含硫碳酸盐岩气藏注CO_(2)埋存及提高天然气采收率开采过程中存在的主要问题,详细论述了高含硫碳酸盐岩气藏注CO_(2)埋存及提高采收率机理研究进展,并提出了未来发展方向。 展开更多
关键词 高含硫气藏 CO_(2)埋存 提高天然气采收率 相态 水-岩反应
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高含硫储层硫沉积微观特性 被引量:2
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作者 李农 赵立强 +4 位作者 惠栋 李滔 蒲治锦 邓晓航 周克明 《石油实验地质》 CAS CSCD 北大核心 2023年第1期168-174,184,共8页
四川盆地川东北地区相继发现了一大批高含硫碳酸盐岩气藏,其储量占四川盆地天然气储量的一半以上。然而,硫沉积一直是制约高含硫气藏高效开发的一大难题。结合微米CT扫描、扫描电镜、能谱分析和气相色谱分析等实验手段,运用储层高含硫... 四川盆地川东北地区相继发现了一大批高含硫碳酸盐岩气藏,其储量占四川盆地天然气储量的一半以上。然而,硫沉积一直是制约高含硫气藏高效开发的一大难题。结合微米CT扫描、扫描电镜、能谱分析和气相色谱分析等实验手段,运用储层高含硫气体完成了碳酸盐岩岩样的硫沉积实验,获得了实验前后岩样微观孔隙结构和气体组分的定量变化,首次实现了储层岩石中硫沉积的三维可视化。硫沉积实验结果显示,高含硫气体中总硫含量减小12.58%,有机硫组分减小9.07%;硫微粒主要沉积在半径小于500μm的岩石孔隙中,导致岩石渗透率降低34.40%~67.80%,孔隙度减小3.77%~7.69%。研究结果进一步提升了对硫沉积微观特性的认识,为高含硫气藏增产措施的制定提供了支撑。 展开更多
关键词 高含硫气藏 硫沉积 渗透率 孔隙结构 有机硫组分 四川盆地
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普光高含硫气田开发特征及提高采收率对策
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作者 曾大乾 石志良 +6 位作者 彭鑫岭 李玉丹 张睿 游瑜春 李正华 李辉 李童 《断块油气田》 CAS CSCD 北大核心 2023年第6期879-887,共9页
普光气田是我国最大的碳酸盐岩高含硫气田,具有埋深大、储层非均质性强、边底水活跃、高含H2S及CO_(2)等特点。气田自2005年投入开发,目前逐渐步入稳产末期,面临进一步延长稳产期、提高采收率等挑战。为此,文中系统梳理普光气田不同开... 普光气田是我国最大的碳酸盐岩高含硫气田,具有埋深大、储层非均质性强、边底水活跃、高含H2S及CO_(2)等特点。气田自2005年投入开发,目前逐渐步入稳产末期,面临进一步延长稳产期、提高采收率等挑战。为此,文中系统梳理普光气田不同开发阶段的关键开发指标变化规律,建立了普光礁滩相储层剩余气分布模式,提出了气藏提高采收率对策。研究结果表明:1)普光气田开发阶段分为建产阶段、稳产阶段和调整阶段,期间通过持续跟踪研究、及时优化,使得气田稳产期延长3 a,实现了长期高产稳产;2)普光气田水侵经历快速见水、限产波动、均衡见水及缓慢见水等4个阶段,硫沉积呈现从地面流程向井口、再向井筒深部扩展的趋势,受地层压降、水侵、硫沉积及措施等综合影响,气田产能较初期下降40.63%;3)普光气田剩余气类型分为2大类5小类,其中,井网未控制型分为断层遮挡和独立礁体型,井网控制型分为纯气区动用不充分、水侵区致密层遮挡和水封气型;4)提出了普光高含硫气田提高采收率对策,即通过不同类型剩余气针对性挖潜、井筒-储层硫沉积综合治理、全生命周期控水、整体与分区相结合增压开采等,进一步改善气田开发效果,提高采收率,延长稳产期。文中研究结果将为进一步实现气田长期高效开发提供技术支撑。 展开更多
关键词 高含硫气田 剩余气定量表征 水侵规律 硫沉积规律 产能及压力变化规律 增压开采 提高采收率
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普光高含硫碳酸盐岩气田开发调整关键技术
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作者 曾大乾 游瑜春 +12 位作者 李中超 宿亚仙 张睿 姜淑霞 石志良 张纪喜 刘国萍 彭松 王丹丹 李辉 李玉丹 余启奎 李童 《天然气工业》 EI CAS CSCD 北大核心 2023年第9期102-111,共10页
中国石化已在四川盆地成功开发了普光和元坝两大高含硫气田,但进入“十四五”以来气田开发进入稳产中后期,面临水侵及硫沉积日益严重、剩余气分布复杂、部分气井油压接近外输压力等新问题。为实现气田稳产和提高天然气采收率,以普光高... 中国石化已在四川盆地成功开发了普光和元坝两大高含硫气田,但进入“十四五”以来气田开发进入稳产中后期,面临水侵及硫沉积日益严重、剩余气分布复杂、部分气井油压接近外输压力等新问题。为实现气田稳产和提高天然气采收率,以普光高含硫碳酸岩盐气田为例(以下简称普光气田),对气田开发调整的关键技术及方法进行了系统研究,梳理了储层精细表征及建模、剩余气精细表征与挖潜、控水、控硫、增压开采等5个方面形成的关键技术。研究结果表明:①揭示了礁滩相碳酸盐岩储层不同储集空间类型的孔-渗特征,形成了“相控+震控”储层精细建模技术,精细表征了储层非均质性空间展布;②建立了普光气田5种类型剩余气分布模式,确定了普光气田储层非均质性控制纯气区剩余气分布,受井网完善程度和高渗条带分布控制,水侵区剩余气分布呈现小零散特征,形成了不同类型剩余气挖潜技术;③提出了普光气田采取“高部位控产、低部位排堵结合”的控水治水对策,实现水侵前缘均匀推进;④明确了储层硫沉积主要发生在近井地带(小于6 m),可导致渗透率最大下降70%~80%(表皮增大6.5~12倍),实验证实了重复酸压治硫效果好于注入溶硫剂;⑤建立了考虑产水及硫沉积的气井多相渗流产能评价方法,确定了气田增压潜力、增压幅度、增压时机及增压方式。结论认为,普光高含硫碳酸盐岩气田开发调整关键技术的实施,确保了气田自“十四五”以来稳产目标的实现,研究成果对我国高含硫气田开发调整具有重要的指导和借鉴意义。 展开更多
关键词 高含硫气田 开发调整 礁滩相储层精细表征 剩余气定量分布与挖潜 水侵规律与治理 硫沉积规律与治理 低压气井增压开采
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高含硫气藏固硫沉积特征
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作者 李倩 曾大乾 +4 位作者 李童 张睿 石志良 李玉丹 张广东 《断块油气田》 CAS CSCD 北大核心 2023年第6期999-1006,共8页
储层固硫沉积极大制约了高含硫气藏的高效开发,亟需明确其对储层特性的影响。为此,文中以普光气田的样品为研究对象,通过开展基于有机溶剂溶解原理的固硫饱和度、核磁共振、渗透率测试等一系列实验,结合多重分形理论分析,实现了非均质... 储层固硫沉积极大制约了高含硫气藏的高效开发,亟需明确其对储层特性的影响。为此,文中以普光气田的样品为研究对象,通过开展基于有机溶剂溶解原理的固硫饱和度、核磁共振、渗透率测试等一系列实验,结合多重分形理论分析,实现了非均质特征的量化研究,精细对比了固硫沉积过程中的参数变化,并阐明了不同物性样品中渗透率的伤害机制。研究结果表明:1)随着含硫饱和度的升高,物性差异较大的样品核磁共振T2谱变化规律不同,物性好的样品为双峰分布,物性差的样品呈现双峰—三峰—双峰的规律。2)多重奇异谱和广义分形维数谱的规律表明,2个样品在注硫过程中存在多重分形特征,且固硫沉积对物性差的储层非均质性影响更为敏感。3)随着含硫饱和度的升高,在物性好的样品中,固硫优先沉积于优势孔渗通道中,而后赋存于半封闭的分支裂缝,使得非均质性先升高后降低,连通性由差到略好,渗透率下降趋势先快后慢。在物性较差的样品中,固硫沉积对其非均质性影响较大,整体上渗透率下降趋势较快。研究成果加深了对储层硫沉积机理的认识,可为含硫气井的高效开发提供理论支撑。 展开更多
关键词 高含硫气藏 固硫 多重分形分析 非均质性 渗透率
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川东北高含硫气藏钻井液抗硫工艺优化与应用
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作者 肖金裕 周华安 +4 位作者 暴丹 冯学荣 卢浩 杨兰平 汪伟 《钻井液与完井液》 CAS 北大核心 2023年第6期718-724,共7页
川东北地区铁山坡、罗家寨、渡口河、七里峡、正坝和菩萨殿气田飞仙关组气藏属于高含硫气藏~特高含硫气藏。针对川东北高含硫气藏地质特点和钻井液技术难点分析,提出钻井液抗硫工艺优化对策,并通过室内实验优选出抗硫钻井液体系配方,进... 川东北地区铁山坡、罗家寨、渡口河、七里峡、正坝和菩萨殿气田飞仙关组气藏属于高含硫气藏~特高含硫气藏。针对川东北高含硫气藏地质特点和钻井液技术难点分析,提出钻井液抗硫工艺优化对策,并通过室内实验优选出抗硫钻井液体系配方,进行了钻井液黏度、pH值、碱度、油水比对吸收H_(2)S效果的评价。研究结果表明,水基钻井液和油基钻井液优化抗硫工艺后具有较强的抗硫除硫能力。该抗硫钻井液体系在坡002-H4井和罗家24井现场试用非常成功,钻井周期大幅缩短、机械钻速明显提高,平均井眼扩大率降低,抗硫除硫效果明显,能够满足高含硫井钻进的要求,在下川东高含硫地层钻井方面有着广阔的应用前景。 展开更多
关键词 高含硫化氢气藏 抗硫水基钻井液 抗硫油基钻井液 抗硫工艺 飞仙关组地层
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四川盆地罗家寨高含硫气田安全高效开发与长期稳产关键技术
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作者 葛枫 贾长青 李宏 《天然气工业》 EI CAS CSCD 北大核心 2023年第9期85-92,共8页
罗家寨气田飞仙关组气藏是中国石油在四川盆地储量规模最大、丰度最高的高含硫气藏,自2008年以来,随着开发阶段的不断深入,气藏安全高效开发面临长期稳产的严峻挑战。为保障高含硫气藏的长期稳产,从全生命周期角度系统分析了优质储层准... 罗家寨气田飞仙关组气藏是中国石油在四川盆地储量规模最大、丰度最高的高含硫气藏,自2008年以来,随着开发阶段的不断深入,气藏安全高效开发面临长期稳产的严峻挑战。为保障高含硫气藏的长期稳产,从全生命周期角度系统分析了优质储层准确识别难、硫沉积影响全生命周期产能评价和产能维护难,以及复杂地理和人居环境下硫化氢(H_(2)S)泄漏预警监测难的“三难”问题,并通过地质、工程等多专业联合攻关,创新形成了高含硫天然气开发关键技术。研究结果表明:①解决了低品质地震资料成像、多期滩体叠置与多尺度裂缝发育背景下优质储层预测难的问题,形成了高陡复杂构造高含硫鲕滩气藏超高产井精细培育技术,优质储层预测符合率从70%提高到85%,平均单井无阻流量由293.4×10^(4)m^(3)/d提升至794.3×10^(4)m^(3)/d,确保了超高产井部署的效果,实现了高产;②研发了高含硫气藏高效溶硫产品,解决了元素硫沉积机理及硫沉积影响的生产特征不明确问题,支撑了硫沉积影响的全局智能优化高效决策,形成了硫沉积气藏全生命周期智能优化稳产技术,气藏以900×10^(4)m^(3)/d规模连续稳产6年以上,实现了长期稳产;③解决了国内高含硫气田避难风险评估技术缺乏,以及硫化氢泄漏后大规模避难安全保障等难题,形成了高含硫气田泄漏预警及公众防护技术,气藏已连续安全生产超2500天,实现了安全生产。结论认为,长期稳产关键技术的形成有力支撑了罗家寨高含硫气田“少井高产、长期稳产、安全生产”的重大开发成效,可以为国内外同类型气藏提供有益的借鉴。 展开更多
关键词 四川盆地 罗家寨气田 飞仙关组气藏 高含硫 安全高效开发 长期稳产
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