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A Quantitative Evaluation of Shale Gas Content in Different Occurrence States of the Longmaxi Formation: A New Insight from Well JY-A in the Fuling Shale Gas Field,Sichuan Basin 被引量:8
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作者 TANG Ling SONG Yan +8 位作者 LI Qianwen PANG Xiongqi JIANG Zhenxue LI Zhuo TANG Xianglu YU Hailong SUN Yue FAN Shichao ZHU Lin 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2019年第2期400-419,共20页
Comprehensive quantitative evaluation of shale gas content and the controlling factors in different occurrence states is of great significance for accurately assessing gas-bearing capacity and providing effective well... Comprehensive quantitative evaluation of shale gas content and the controlling factors in different occurrence states is of great significance for accurately assessing gas-bearing capacity and providing effective well-production strategies. A total of 122 core samples from well JY-A in the Fuling shale gas field were studied to reveal the characteristics of S_1 l shale,15 of which were selected to further predict the shale gas content in different occurrence states, which are dependent on geological factors in the thermal evolution process. Geological parameters were researched by a number of laboratory programs, and the factors influential in controlling shale gas content were extracted by both PCA and GRA methods and prediction models were confirmed by the BE method using SPSS software. Results reveal that the adsorbed gas content is mainly controlled by TOC, Ro, SSA, PD and pyrite content, and the free gas content is mainly controlled by S_2, quartz content, gas saturation and formation pressure for S_1 l in well JY-A. Three methods, including the on-site gas desorption method, the empirical formula method, and the multiple regression analysis method were used in combination to evaluate the shale gas capacity of well JY-A, all of which show that the overall shale gas content of well JY-A is in the range of 2.0–5.0 m^3/t and that the free gas ratio is about 50%, lower than that of well JY-1. Cause analysis further confirms the tectonics and preservation conditions of S_1 l in the geological processes, especially the influence of eastern boundary faults on well JY-A, as the fundamental reasons for the differences in shale gas enrichment in the Jiaoshiba area. 展开更多
关键词 shale gas CONTENT ON-SITE gas desorption multiple regression analysis controlling factors Longmaxi shaleS fuling shale gas field Jiaoshiba area
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Theory,technology and practice of shale gas three-dimensional development:A case study of Fuling shale gas field in Sichuan Basin,SW China 被引量:2
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作者 SUN Huanquan CAI Xunyu +5 位作者 HU Degao LU Zhiyong ZHAO Peirong ZHENG Aiwei LI Jiqing WANG Haitao 《Petroleum Exploration and Development》 SCIE 2023年第3期651-664,共14页
In the Jiaoshiba block of the Fuling shale gas field,the employed reserves and recovery factor by primary well pattern are low,no obvious barrier is found in the development layer series,and layered development is dif... In the Jiaoshiba block of the Fuling shale gas field,the employed reserves and recovery factor by primary well pattern are low,no obvious barrier is found in the development layer series,and layered development is difficult.Based on the understanding of the main factors controlling shale gas enrichment and high production,the theory and technology of shale gas three-dimensional development,such as fine description and modeling of shale gas reservoir,optimization of three-dimensional development strategy,highly efficient drilling with dense well pattern,precision fracturing and real-time control,are discussed.Three-dimensional development refers to the application of optimal and fast drilling and volume fracturing technologies,depending upon the sedimentary characteristics,reservoir characteristics and sweet spot distribution of shale gas,to form"artificial gas reservoir"in a multidimensional space,so as to maximize the employed reserves,recovery factor and yield rate of shale gas development.In the research on shale gas three-dimensional development,the geological+engineering sweet spot description is fundamental,the collaborative optimization of natural fractures and artificial fractures is critical,and the improvement of speed and efficiency in drilling and fracturing engineering is the guarantee.Through the implementation of three-dimensional development,the overall recovery factor in the Jiaoshiba block has increased from 12.6%to 23.3%,providing an important support for the continuous and stable production of the Fuling shale gas field. 展开更多
关键词 shale gas three-dimensional development fuling shale gas field Sichuan Basin fine reservoir description precision fracturing recoveryfactor
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An overview of the geology and production of the Fuling shale gas field,Sichuan Basin,China 被引量:17
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作者 Haikuan Nie Donghui Li +4 位作者 Guangxiang Liu Zhiyuan Lu Hu Wang Ruyue Wang Guangrong Zhang 《Energy Geoscience》 2020年第3期147-164,共18页
The Fuling shale gas field in China is the largest shale gas field as well as the largest of its type discovered in any Lower Paleozoic formation.In this study,the geology and production of the upper and lower gas lay... The Fuling shale gas field in China is the largest shale gas field as well as the largest of its type discovered in any Lower Paleozoic formation.In this study,the geology and production of the upper and lower gas layers in the Fuling shale gas field are evaluated in terms of structure,shale quality,fault,initial production,and estimated ultimate recovery(EUR).The shale in the lower gas layer of the Jiaoshiba anticline is a high-quality reservoir,where the space is dominated by organic pores in kerogen,and the gas content is high.The shale gas wells reveal relatively high initial production and EUR.However,the shale in the upper gas layer of the Jiaoshiba anticline has reservoir space mainly composed of clay mineral pores and organic pores within bitumen,and the gas content is low.In terms of structure,primary gas migration may occur in the upper gas layer,resulting in free gas accumulation in the structural high,where the development effects are generally better than those in the structural low.The lower gas layer in the Pingqiao anticline,is the main interval for shale gas accumulation and development due to the high-quality shale.Under the influence of faults,the efficiency of exploration wells emplaced on top of the anticline is much lower a compared with those in the flanks.The residual synclines close to the Sichuan Basin,including the Baima and Baitao anticlines,are characterized by more recent uplifts,larger area,greater distance from the deep and large faults,and early fracture closure.Therefore,we recommend that the shale gas exploration and development should be carried out preferentially in areas close to the center of the residual synclines,featuring relatively high-pressure coefficient and moderate burial depth. 展开更多
关键词 Geologic characteristics Production features Longmaxi formation fuling shale gas field Sichuan basin
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Technologies in Discovery and Exploration of Fuling Shale Gas Field, China 被引量:4
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作者 Xusheng Guo Dongfeng Hu +3 位作者 Yuping Li Xiangfeng Wei Qingbo Wang Hui Zhang 《Natural Resources》 2016年第5期271-286,共16页
Marine shale gas in South China is widely distributed and demonstrates an enriched resource. Compared with the North American commercial shale gas field, the shale formation in South China is featured by old age, mult... Marine shale gas in South China is widely distributed and demonstrates an enriched resource. Compared with the North American commercial shale gas field, the shale formation in South China is featured by old age, multiple stages tectonic movements, and high thermal evolution degree and complex reservoir forming conditions. As a result, the existing theories and technical methods of exploration in North America cannot be simply applied to South China. Since 2007, based on the in-depth study on a large quantity of analytical test data, we have conducted the theory and technology research for the southern marine shale gas, found Wufeng-Longmaxi Group deep water shelf high-quality shale gas critical parameters coupling laws, proposed the “Binary Enrichment” theory for highly evolved marine shale gas in southern complex tectonic zone, and established a zone selection and evaluation criteria, which are based on the quality of shale, for the key of preservation condition, and for the purpose of economy. Taking this as a guide, we selected Longmaxi formation Lower Silurian of Fuling area in southeastern Sichuan Province as the preferred breakthrough field for the shale gas exploration. The Jiaoye 1 well has the daily gas production of 20.3 × 10<sup>4</sup> m<sup>3</sup>, which embarked the found of China’s first large-scale business development gas field, the Fuling shale gas field. And we submit the first domestic shale gas proven reserves of 1067.5 × 10<sup>8</sup> m<sup>3</sup>. The Fuling shale gas reservoirs are deep water shelf marine high-quality shale, with favorable thickness and even distribution, without dissection in the middle. They are typical self-generation and self-storage shale gas reservoirs. The gas fields have high production gas well;high pressure gas reservoir, good gas components and good exploit results, and there for the Fuling shale gas field is characterized by mid-depth, high pressure, high reservoir pressure, and high quality gas accumulation. Up to March 24, 2014, all of the 101 fracture-gas testing wells have obtained middle and upper shale airflow, with the average single well test production of 32.6 × 10<sup>4</sup> m<sup>3</sup>/d. In the exploration and development process, technology series in geological evaluation, horizontal well, drilling, well completion, piecewise fracturing techniques have been gradually formed. It is of great importance to commercially develop the domestic shale gas and promote the restructuring of China’s energy structure. 展开更多
关键词 Exploration Discovery Key Technologies shale gas Wufeng-Longmaxi Group fuling shale gas field
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Discovery of Filling Shale Gas Field and its prospects
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作者 Xusheng GUO Yuping LI +2 位作者 Jinlei LI Minggang FENG Hua DUAN 《Frontiers in Energy》 SCIE CSCD 2019年第2期354-366,共13页
A series of breakthroughs have been made in the understanding, evaluation, and exploration of shale gas from discovery, environmental protection to efficient exploration in the discovering of Fuling Gas Field. By reve... A series of breakthroughs have been made in the understanding, evaluation, and exploration of shale gas from discovery, environmental protection to efficient exploration in the discovering of Fuling Gas Field. By revealing the positive correlation between organic carbon content and siliceous mineral content of shale deposited in deep shelf, dynamic preservation mechanism of “early retention and late deformation,”it is clarified that the shales deposited in deep shelf are the most favorable for shale gas generation, storage and fracturing. The preser-ving conditions determine the levels of shale gas accumulation, thus the evaluation concept of taking the quality of the shale as the base and the preserving conditions as key is proposed, the evaluation system for strategic selection of favorable zones is established for marine shale gas exploration in Southern China. Moreover, the “sweet point” seismic forecasting technologies for marine shale gas, the “six properties” logging technologies for evaluating shale gas layers, the technologies for quick and efficient drilling of horizontal well groups, and the fracturing technologies for composite fractures for hor-izontal wells are invented. The paper discussed the exploration prospect of shale gas in the shales of Wufeng-Longmaxi Formation in great depth in Sichuan Basin, shale gas exploration in the outer region of the south, and continental shale gas exploration in China. 展开更多
关键词 shale gas ACCUMULATION LAWS exploration technologies Longmaxi Formation fuling shale gas field SICHUAN Basin
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涪陵页岩气田三维水平井大井眼导向钻井技术 被引量:13
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作者 刘匡晓 王庆军 +1 位作者 兰凯 赵转玲 《石油钻探技术》 CAS CSCD 北大核心 2016年第5期16-21,共6页
涪陵页岩气田三维水平井二开斜井段井眼尺寸大,稳斜段长,砂泥岩地层交互频繁,存在井眼轨迹方位调整幅度大、钻具组合造斜率低且不稳定、机械钻速低等问题,为此,进行了三维水平井大井眼导向钻井技术研究。利用地层的自然造斜能力,对井眼... 涪陵页岩气田三维水平井二开斜井段井眼尺寸大,稳斜段长,砂泥岩地层交互频繁,存在井眼轨迹方位调整幅度大、钻具组合造斜率低且不稳定、机械钻速低等问题,为此,进行了三维水平井大井眼导向钻井技术研究。利用地层的自然造斜能力,对井眼轨道进行优化设计,降低造斜率,缩短稳斜段长度,减少井眼轨迹调整量,降低井眼轨迹控制难度;将"单弯双稳"钻具组合优化为"单弯单稳"钻具组合,并对钻压进行优化,以提高稳斜段复合钻进进尺,降低摩阻扭矩;应用水力振荡器降低扭方位井段的摩阻扭矩,以实现提高机械钻速的目的。该导向钻井技术在涪陵页岩气田焦石坝区块34口水平井进行了应用,二开斜井段平均定向钻进时间15.30d,较同区块已完钻井缩短37.63%,平均钻井周期58.45d,较同区块已完钻井缩短21.01%,井身质量合格率100%。应用效果表明,三维水平井大井眼导向钻井技术可以有效提高涪陵页岩气田大尺寸斜井段的机械钻速,缩短钻井周期。 展开更多
关键词 水平井 井眼轨迹 钻具组合 机械钻速 钻井周期 水力振荡器 涪陵页岩气田
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涪陵页岩气田钻井技术难点及对策 被引量:94
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作者 牛新明 《石油钻探技术》 CAS CSCD 北大核心 2014年第4期1-6,共6页
涪陵页岩气田是我国第一个投入商业化开发的页岩气田,其地表和地下地质情况均十分复杂,与常规油气藏和国外页岩气田相比,其开发过程中钻井施工难度较大。根据大量翔实的资料,从井壁稳定、轨迹控制、固完井质量以及降本增效等方面论述了... 涪陵页岩气田是我国第一个投入商业化开发的页岩气田,其地表和地下地质情况均十分复杂,与常规油气藏和国外页岩气田相比,其开发过程中钻井施工难度较大。根据大量翔实的资料,从井壁稳定、轨迹控制、固完井质量以及降本增效等方面论述了涪陵地区页岩气田钻井工程中存在的主要技术难点,并对其主要原因进行了分析。在此基础上,针对性地提出了解决上述钻井技术难点的技术思路和方法,并在涪陵地区页岩气钻井技术研究成果的基础上,指出下一步应深化钻井地质特征精细描述、开展三维井眼轨道优化设计及控制、强化钻井提速技术攻关、完善钻井液与完井工艺配套等研究,以持续提高涪陵页岩气田的钻井效益。 展开更多
关键词 页岩气 水平井 钻井 井眼稳定 井眼轨迹 涪陵页岩田
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涪陵江东与平桥区块页岩气水平井井眼轨迹控制技术 被引量:19
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作者 宋争 《石油钻探技术》 CAS CSCD 北大核心 2017年第6期14-18,共5页
涪陵江东与平桥区块断层发育、地层倾角大,水平井井眼轨迹控制存在着与地质预测偏差大、轨迹调整频繁、中靶难度大和定向托压严重等难题,为此,开展了井眼轨道参数及剖面优化设计,钻具组合与钻井参数协同优化等研究,引入了旋转导向技术... 涪陵江东与平桥区块断层发育、地层倾角大,水平井井眼轨迹控制存在着与地质预测偏差大、轨迹调整频繁、中靶难度大和定向托压严重等难题,为此,开展了井眼轨道参数及剖面优化设计,钻具组合与钻井参数协同优化等研究,引入了旋转导向技术和近钻头随钻测量技术等导向钻井技术,配套了超短保径PDC钻头、PDC-牙轮复合钻头及水力振荡器等降摩减阻及提速工具,形成了适用于涪陵江东与平桥区块的水平井井眼轨迹控制技术。现场应用表明,通过井眼剖面优化、钻具组合及钻进参数协同优化等措施,提高了定向施工效率;应用旋转导向和近钻头随钻测量等导向钻井技术,机械钻速提高161%,储层钻遇率达到90%以上;通过配套降摩减阻及提速工具,机械钻速提高20%以上,定向托压现象得到缓解。涪陵江东与平桥区块水平井井眼轨迹控制技术为钻井提速提效、加快产能建设提供了技术支撑。 展开更多
关键词 页岩气 水平井 井眼轨迹 托压 旋转导向 江东区块 平桥区块 培陵页岩气田
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涪陵页岩气田加密井钻井关键技术 被引量:2
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作者 刘衍前 《石油钻探技术》 CAS CSCD 北大核心 2020年第5期21-26,共6页
涪陵页岩气田加密井多处于页岩气压裂区且井网部署密集,导致钻井溢漏等井下故障多发、钻井液安全密度窗口确定难、压裂液侵入造成井壁坍塌及卡钻、防压裂干扰井眼轨道设计难度大等问题。针对上述钻井技术难点,从压裂区地层孔隙压力计算... 涪陵页岩气田加密井多处于页岩气压裂区且井网部署密集,导致钻井溢漏等井下故障多发、钻井液安全密度窗口确定难、压裂液侵入造成井壁坍塌及卡钻、防压裂干扰井眼轨道设计难度大等问题。针对上述钻井技术难点,从压裂区地层孔隙压力计算模型建立、合理钻井液密度窗口设计、防压裂干扰井眼轨道设计、加密井防漏堵漏和溢漏同存防控等方面进行了技术攻关,形成了适用于涪陵焦石坝主体区块的加密井钻井关键技术。该关键技术在涪陵页岩气田应用31口井,平均水平段长1933.25 m,平均钻井周期52.38 d,平均机械钻速10.31 m/h,较前期加密评价井机械钻速提高了15.3%,钻井周期缩短了10.7%。涪陵页岩气田加密井钻井关键技术为涪陵页岩气田二期产能建设提供了技术支撑,也为其他页岩气田开发提供了技术参考和借鉴。 展开更多
关键词 页岩气 加密井 压裂 干扰 钻井液密度 井眼轨道 涪陵页岩气田
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涪陵页岩气田定产生产分段压裂水平井井底流压预测方法 被引量:2
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作者 卢文涛 李继庆 +3 位作者 郑爱维 梁榜 张谦 杨文新 《天然气地球科学》 EI CAS CSCD 北大核心 2018年第3期437-442,共6页
定产生产页岩气分段压裂水平井的井底流压预测是制约页岩气井稳产期预测的关键难题。为此以页岩气分段压裂水平井不稳定线性渗流理论为基础,提出了产量—时间叠加函数(Q_g·t^(0.5))_(sup)概念,建立了拟压力差[m(p_i-m(p_(wf))]与... 定产生产页岩气分段压裂水平井的井底流压预测是制约页岩气井稳产期预测的关键难题。为此以页岩气分段压裂水平井不稳定线性渗流理论为基础,提出了产量—时间叠加函数(Q_g·t^(0.5))_(sup)概念,建立了拟压力差[m(p_i-m(p_(wf))]与产量—时间叠加函数(Q_g·t^(0.5))_(sup)特征曲线识别图版,确定了反映页岩气气藏物性和压裂改造效果的综合参数团m,构建了页岩气分段压裂水平井定产阶段的井底流压解析解预测方程。涪陵页岩气田定产生产、变配产生产2类页岩气井应用情况表明:采用新建立的井底流压预测解析解方程预测单井井底流压和实测井底流压吻合度达到95%以上,单井稳产期预测精度达到90%以上。该方法对现场定产生产、变配产条件下的页岩气分段压裂水平井稳产期预测、合理配产具有重要指导意义。 展开更多
关键词 井底流压预测 解析解 线性流 定产井 分段压裂水平井 涪陵页岩气田
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焦石坝区块页岩气井井底流压计算方法评价
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作者 谭聪 《江汉石油职工大学学报》 2022年第4期14-17,共4页
为了更准确地计算页岩气井井底流压,精确评价气井产能,探寻气井生产规律,掌握气井开发动态,通过分析多种管流压降计算模型,利用涪陵页岩气田气井的各类静、动态资料,明确了不同压降模型应用于涪陵页岩气田气井的适用条件及影响其计算结... 为了更准确地计算页岩气井井底流压,精确评价气井产能,探寻气井生产规律,掌握气井开发动态,通过分析多种管流压降计算模型,利用涪陵页岩气田气井的各类静、动态资料,明确了不同压降模型应用于涪陵页岩气田气井的适用条件及影响其计算结果的主要因素,并在原有模型基础上建立了一种修正简化模型。研究表明,对于涪陵页岩气田的气井,当其气液比>7000 m^(3)/m^(3),单相流模型可做拟单相流计算,误差<5%;当其气液比<7000 m^(3)/m^(3),且气井瞬时产量大于临界携液流量时,气井可采用两相流Hagendorn&Brown模型计算井底流压,误差<10%,同时针对积液状态气井建立修正简化模型可进一步降低两相流模型计算结果误差。研究为具有相同背景的页岩气井井底流压预测提供了参考。 展开更多
关键词 页岩气井 涪陵页岩气田 焦石坝 管流 井底流压
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