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Particle bond destruction based on spiral-cyclone coupling mechanism for the cementation of hydrates and mud–sand
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作者 Yang Tang Qing Gu +4 位作者 Na Xie Yufa He Yunjian Zhou Zeliang Li Guorong Wang 《Chinese Journal of Chemical Engineering》 2025年第2期120-130,共11页
Weak cementation between natural gas hydrates and mud–sand seriously affects the solid-fluidized mining of natural gas hydrates. In this study, we analyze the debonding of natural gas hydrate sediment (NGHS) particle... Weak cementation between natural gas hydrates and mud–sand seriously affects the solid-fluidized mining of natural gas hydrates. In this study, we analyze the debonding of natural gas hydrate sediment (NGHS) particles by applying the principle of spiral-cyclone coupling separation. To achieve this, weakly cemented NGHS particle and mechanical models were established. In the flow field of the spiral-cyclone flow-coupling separator, the motion characteristics of the weakly cemented NGHS particles and the destruction process of the cementation bond were analyzed. The destruction of the bonds mainly occurred in the spiral channel, and the destruction efficiency of the bonds was mainly affected by the rotational speed. Collision analysis of the particles and walls showed that when the velocity is 10–16 m·s^(−1), the cementation bond can be broken. The greater the speed, the better the effect of the bond fracture. The breaking rate of the cementation bonds was 85.7%. This study is significant for improving the degumming efficiency in natural gas hydrate exploitation, improving the recovery efficiency of hydrates, and promoting the commercialization of hydrate solid fluidization exploitation. 展开更多
关键词 Natural gas hydrate Spiral-cyclone Model Weakly cemented nghs particles Cementation bond Numerical analysis
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幼儿鼻内型鼻神经胶质异位1例报告
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作者 张羽娟 汪峻峰 潘思华 《复旦学报(医学版)》 CAS CSCD 北大核心 2024年第3期435-438,共4页
鼻神经胶质异位(nasal glial heterotopia,NGH)又称鼻神经胶质瘤,是一种罕见的先天性发育异常。扬州大学附属医院在2023年收治1名2岁鼻内型鼻神经胶质异位女性患儿,因双侧间断流涕就诊于我院耳鼻咽喉头颈外科门诊,检查见左侧鼻腔占位,... 鼻神经胶质异位(nasal glial heterotopia,NGH)又称鼻神经胶质瘤,是一种罕见的先天性发育异常。扬州大学附属医院在2023年收治1名2岁鼻内型鼻神经胶质异位女性患儿,因双侧间断流涕就诊于我院耳鼻咽喉头颈外科门诊,检查见左侧鼻腔占位,拟诊“鼻腔占位(左)”收治入院,完善相关检查后行手术治疗,术后病理检查结果示胶质瘤,最终诊断为鼻神经胶质异位鼻内型,术后随访半年,未见复发,无脑膜炎及脑脊液鼻漏等并发症。NGH发病率极低,容易漏诊,对于儿童先天性鼻中线部位肿物,CT结果提示肿物与颅内不相通时应考虑本病可能,及时手术治疗预后良好。 展开更多
关键词 鼻神经胶质异位(NGH) 鼻腔肿物 临床表现 幼儿
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Application of wellhead suction anchor technology in the second production test of natural gas hydrates in the South China Sea 被引量:3
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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
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Stability analysis of seabed strata and casing structure during the natural gas hydrates exploitation by depressurization in horizontal wells in South China Sea 被引量:2
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作者 Peng-fei Xie Lin Yang +7 位作者 Qian-yong Liang Xu-hui Zhang Liang-hua Zhang Bin Zhang Xiao-bing Lu Hui-ce He Xue-min Wu Yi-fei Dong 《China Geology》 2022年第2期300-309,共10页
Natural gas hydrates(NGHs)are a new type of clean energy with great development potential.However,it is urgent to achieve safe and economical NGHs development and utilization.This study established a physical model of... Natural gas hydrates(NGHs)are a new type of clean energy with great development potential.However,it is urgent to achieve safe and economical NGHs development and utilization.This study established a physical model of the study area using the FLAC^(3D) software based on the key parameters of the NGHs production test area in the South China Sea,including the depressurization method,and mechanical parameters of strata,NGHs occurrence characteristics,and the technological characteristics of horizontal wells.Moreover,this study explored the law of influences of the NGHs dissociation range on the stability of the overburden strata and the casing structure of a horizontal well.The results are as follows.With the dissociation of NGHs,the overburden strata of the NGHs dissociation zone subsided and formed funnelshaped zones and then gradually stabilized.However,the upper interface of the NGHs dissociation zone showed significant redistribution and discontinuity of stress.Specifically,distinct stress concentration and corresponding large deformation occurred in the build-up section of the horizontal well,which was thus prone to suffering shear failure.Moreover,apparent end effects occurred at the end of the horizontal well section and might cause the deformation and failure of the casing structure.Therefore,it is necessary to take measures in the build-up section and at the end of the horizontal section of the horizontal well to prevent damage and ensure the wellbore safety in the long-term NGHs exploitation. 展开更多
关键词 Natural gas hydrates(nghs) Exploitation by depressurization Horizontal well Stratum subsidence Shear failure nghs exploration trial engineering Oil and gas exploration engineering Shenhu Area South China Sea
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Passability test and simulation of sand control string with natural gas hydrates completion in large curvature hole 被引量:1
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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
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Velocity-porosity relationships in hydrate-bearing sediments measured from pressure cores,Shenhu Area,South China Sea
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作者 Lin Lin Jun Cao +4 位作者 Jin Qian Jiu-jing Shang Wei Zhang Jin-gan Lu Jin-qiang Liang 《China Geology》 2022年第2期267-275,共9页
Evaluating velocity-porosity relationships of hydrate-bearing marine sediments is essential for characterizing natural gas hydrates below seafloor as either a potential energy resource or geohazards risks.Four sites h... Evaluating velocity-porosity relationships of hydrate-bearing marine sediments is essential for characterizing natural gas hydrates below seafloor as either a potential energy resource or geohazards risks.Four sites had cored using pressure and non-pressure methods during the gas hydrates drilling project(GMGS4)expedition at Shenhu Area,north slope of the South China Sea.Sediments were cored above,below,and through the gas-hydrate-bearing zone guided with logging-while-drilling analysis results.Gamma density and P-wave velocity were measured in each pressure core before subsampling.Methane hydrates volumes in total 62 samples were calculated from the moles of excess methane collected during depressurization experiments.The concentration of methane hydrates ranged from 0.3%to 32.3%.The concentrations of pore fluid(25.44%to 68.82%)and sediments(23.63%to 54.28%)were calculated from the gamma density.The regression models of P-wave velocity were derived and compared with a global empirical equation derived from shallow,unconsolidated sediments data.The results were close to the global trend when the fluid concentration is larger than the critical porosity.It is concluded that the dominant factor of P-wave velocity in hydrate-bearing marine sediments is the presence of the hydrate.Methane hydrates can reduce the fluid concentration by discharging the pore fluid and occupying the original pore space of sediments after its formation. 展开更多
关键词 Natural gas hydrates(nghs) Methane hydrate P-wave velocity POROSITY Saturation Pressure-core nghs exploration trial engineering Oil and gas exploration engineering Shenhu Area South China Sea
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天然气管网压力能用于NGH储气调峰的设想 被引量:10
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作者 郑志 王树立 +2 位作者 陈思伟 宋琦 谢磊 《油气储运》 CAS 北大核心 2009年第10期47-51,共5页
对当前国内外解决燃气调峰问题采用的主要方式进行了对比分析,提出了天然气水合物(NGH)的技术优势,综述了NGH的结构特点、储气特性及其制备、储存和气化过程。利用火用分析法分析了天然气管网可利用的压力能,并提出了压力能的回收利用... 对当前国内外解决燃气调峰问题采用的主要方式进行了对比分析,提出了天然气水合物(NGH)的技术优势,综述了NGH的结构特点、储气特性及其制备、储存和气化过程。利用火用分析法分析了天然气管网可利用的压力能,并提出了压力能的回收利用流程。认为将高压天然气调压过程中产生的工艺冷能与天然气水合物的制备工艺有机结合,可促进天然气水合物的高效生成,简化天然气水合物的生成设备,丰富冷能的利用方式。 展开更多
关键词 天然气 管网 压力能 NGH 储气调峰
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水合物合成电容特性与降压开采二维实验研究 被引量:3
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作者 杜燕 何世辉 +1 位作者 黄冲 冯自平 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2009年第4期107-111,共5页
在天然气水合物二维开采模拟系统基础上,进行了水合物原位生成及分解过程的实验研究,探讨了温度、压力及电容的变化特性;开展了天然气水合物降压开采二维实验研究,得到了二维开采过程中各参数的动态变化规律,并对敏感因素进行了评价。... 在天然气水合物二维开采模拟系统基础上,进行了水合物原位生成及分解过程的实验研究,探讨了温度、压力及电容的变化特性;开展了天然气水合物降压开采二维实验研究,得到了二维开采过程中各参数的动态变化规律,并对敏感因素进行了评价。在水合物合成过程中,随水合物饱和度的增加,水量的不断减少,电容量总体减小趋势明显。降压开采表明在二维平面上存在一定的压差与温差,其中温降随与开采井的距离增大而减小。产气过程分为流动阻力控制、分解速率控制以及残余气体采出三个部分,主要受分解速率和流动阻力共同影响。 展开更多
关键词 天然气水合物(NGH) 二维 电容 降压开采 温度
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天然气与冰反应生成水合物的实验研究 被引量:3
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作者 郝妙莉 王胜杰 +1 位作者 沈建东 刘芙蓉 《西安石油大学学报(自然科学版)》 CAS 2004年第3期35-38,共4页
在一个小型工业化水合物生成装置上 ,对由冰和天然气反应生成天然气水合物的过程及动力学进行了研究 .实验结果表明 :水合物的生成温度与诱导时间无关 ,诱导时间不会改变水合物的生成条件 ;较大的过饱和度或过冷度对水合物生成有利 .此... 在一个小型工业化水合物生成装置上 ,对由冰和天然气反应生成天然气水合物的过程及动力学进行了研究 .实验结果表明 :水合物的生成温度与诱导时间无关 ,诱导时间不会改变水合物的生成条件 ;较大的过饱和度或过冷度对水合物生成有利 .此外 ,采用过压方式 ,研究了这种类似结晶过程的扰动作用 .最后还得到了最佳的反应时间 . 展开更多
关键词 天然气 水合物 过饱和度 过冷度 NGH 甲烷 反应动力学
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天然气水合物(NGH)储运天然气技术与常规储运技术的对比分析 被引量:21
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作者 崔朝阳 沈建东 刘芙蓉 《科学技术与工程》 2004年第11期925-929,共5页
介绍了一种常压储运天然气的新型技术;天然气水合物(NGH)技术。并从技术性、经济性、安全性三方面对比分析了天然气的储存、运输过程所采用的压缩天然气(CNG)、液化天然气(LNG)和NGH三种方案的优缺点,分析了NGH技术的可行性及其在各方... 介绍了一种常压储运天然气的新型技术;天然气水合物(NGH)技术。并从技术性、经济性、安全性三方面对比分析了天然气的储存、运输过程所采用的压缩天然气(CNG)、液化天然气(LNG)和NGH三种方案的优缺点,分析了NGH技术的可行性及其在各方面的优势,对天然气输运领域的前景进行了展望。 展开更多
关键词 天然气水合物 NGH 压缩天然气 液化天然气 气体络合物
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多孔介质中天然气水合物注热开采影响因素实验研究 被引量:6
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作者 李淑霞 王炜 +1 位作者 陈月明 夏晞冉 《海洋地质前沿》 北大核心 2011年第6期49-54,共6页
利用自制的一维天然气水合物开采模拟实验系统,模拟海洋地质条件,在填砂模型中生成天然气水合物,再注入热盐水进行注热开采的物理模拟实验,分析注热参数对水合物分解动态及注热开采能量效率的影响。分别设定注热水温度为60、80、100℃,... 利用自制的一维天然气水合物开采模拟实验系统,模拟海洋地质条件,在填砂模型中生成天然气水合物,再注入热盐水进行注热开采的物理模拟实验,分析注热参数对水合物分解动态及注热开采能量效率的影响。分别设定注热水温度为60、80、100℃,注热水速度为12、15、18 mL/min,最长注热水时间220 min。结果表明:在相同的注热水速度下,注热水温度越高,水合物分解产气速率越大,能量效率越低;在相同的注热水温度下,注热水速度越高,水合物分解产气速率越大,能量效率也越低;随着注热水时间的延长,水合物注热分解的能量效率逐渐降低。因此,建议采用"热水段塞+常温水驱替",或者注热与降压相结合的开采方式,提高水合物藏开采的经济效益。 展开更多
关键词 天然气水合物(NGH) 水合物生成 水合物注热分解 注热水温度 注热水速度
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船载天然气水合物的输送及其经济性 被引量:6
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作者 刘锋 樊栓狮 《天然气工业》 EI CAS CSCD 北大核心 2005年第7期126-127,130,共3页
目前大部分天然气是通过高压管道或LNG的方式来输送,这两种方法的初期投资和运营费用都很高。文章提出以天然气水合物(NGH)球的形式来输送天然气,并讨论了船运NGH的流程及其可行性。定性地比较了NGH输运方式与LNG输运方式的经济性。在... 目前大部分天然气是通过高压管道或LNG的方式来输送,这两种方法的初期投资和运营费用都很高。文章提出以天然气水合物(NGH)球的形式来输送天然气,并讨论了船运NGH的流程及其可行性。定性地比较了NGH输运方式与LNG输运方式的经济性。在年天然气输送量为40万吨以下、输送距离为3000海里范围内,NGH船输送方式比LNG输送方式有一定的经济优势。考虑到NGH和LNG生产制造过程和再气化过程的费用,NGH输送方式的经济优势将更为明显。 展开更多
关键词 天然气水合物 经济性 船载 输送方式 经济优势 NGH LNG 高压管道 运营费用 输送距离 气化过程 制造过程 输送量 输运
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不能管输天然气的贮运方式与应用前景 被引量:4
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作者 位雅莉 蒋洪 《石油与天然气化工》 CAS CSCD 北大核心 2004年第2期88-90,96,共4页
针对一些滩海、边远和分散的油气井 ,以及一些大型油气田在开发过程中 ,由于各种原因不能将产生的天然气用管道来输送 ,而是放空烧掉或关井 ,因此造成环境污染和巨大浪费的情况 ,讨论了用LNG、CNG、ANG和NGH这四种非管输贮运方式可以缓... 针对一些滩海、边远和分散的油气井 ,以及一些大型油气田在开发过程中 ,由于各种原因不能将产生的天然气用管道来输送 ,而是放空烧掉或关井 ,因此造成环境污染和巨大浪费的情况 ,讨论了用LNG、CNG、ANG和NGH这四种非管输贮运方式可以缓解这一局面 ,分析和列举了它们各自的特点及应用现状和前景 ,并说明通过使用它们可提高天然气在我国的利用程度。 展开更多
关键词 液化天然气 运输方式 LNG CNG NGH 天然气水合物 吸附天然气 ANG
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泡沫对LNG蒸气外逸率平均值与标准差的影响 被引量:1
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作者 杨洁 李玉星 +2 位作者 朱建鲁 张亦翔 韩辉 《中国安全科学学报》 CAS CSCD 北大核心 2018年第10期62-66,共5页
为深入揭示高倍泡沫抑制液化天然气(LNG)蒸气外逸机制,通过HYSYS计算和试验,首次证明泡沫施加在LNG液池上有天然气水合物(NGH)生成,田口分析量化得到不同阶段泡沫性能、LNG液池泄漏量、泡沫覆盖高度对LNG蒸气外逸率平均值与标准差的影... 为深入揭示高倍泡沫抑制液化天然气(LNG)蒸气外逸机制,通过HYSYS计算和试验,首次证明泡沫施加在LNG液池上有天然气水合物(NGH)生成,田口分析量化得到不同阶段泡沫性能、LNG液池泄漏量、泡沫覆盖高度对LNG蒸气外逸率平均值与标准差的影响过程。结果表明:加泡初期,泡沫性能对蒸气外逸率平均值与标准差影响大,可使标准差大于0.2kg/min,稳定性高的泡沫降低平均值与标准差,发泡倍数大的泡沫降低平均值增大标准差,发泡倍数对标准差的影响强于稳定性;蒸气外逸率均值不随泄漏量单调变化;停加泡沫后,泡沫覆盖高度的影响逐渐增强,初期蒸气外逸率平均值随稳定性增大、发泡倍数减小而增加;标准差随泄漏量、泡沫高度单调变化。 展开更多
关键词 蒸气外逸率 高倍泡沫性能 天然气水合物(NGH) 泡沫覆盖高度 液化天然气(LNG) 液池泄漏量
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NGH次同步谐振阻尼方案及其改进措施的研究 被引量:5
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作者 赵学强 《电力系统自动化》 EI CSCD 北大核心 1999年第12期29-34,共6页
针对串联补偿系统次同步谐振的抑制及防止措施,对NGH次同步谐振阻尼方案作了详细的理论分析和仿真研究,并在此基础上对原NGH方案作进一步的改进,提出了带有次同步谐振检测和预触发功能的NGH方案。通过具体算例的仿真分析说... 针对串联补偿系统次同步谐振的抑制及防止措施,对NGH次同步谐振阻尼方案作了详细的理论分析和仿真研究,并在此基础上对原NGH方案作进一步的改进,提出了带有次同步谐振检测和预触发功能的NGH方案。通过具体算例的仿真分析说明,NGH次同步谐振阻尼方案对提高暂态转矩稳定和有次同步谐振问题系统的稳定性是非常有效的。采用改进方案后,NGH控制在次同步谐振发生时能自动投入,比原方案更迅速有效地抑制振荡,在次同步谐振基本抑制后又能自动平滑地退出。 展开更多
关键词 串联补偿 次同步谐振 NGH方案 输电系统
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Experimental study on characteristics of pore water conversion during methane hydrates formation in unsaturated sand 被引量:5
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作者 Yun-kai Ji Chang-ling Liu +4 位作者 Zhun Zhang Qing-guo Meng Le-le Liu Yong-chao Zhang Neng-you Wu 《China Geology》 2022年第2期276-284,共9页
Understanding the pore water conversion characteristics during hydrate formation in porous media is important to study the accumulation mechanism of marine gas hydrate.In this study,low-field NMR was used to study the... Understanding the pore water conversion characteristics during hydrate formation in porous media is important to study the accumulation mechanism of marine gas hydrate.In this study,low-field NMR was used to study the pore water conversion characteristics during methane hydrate formation in unsaturated sand samples.Results show that the signal intensity of T_(2) distribution isn’t affected by sediment type and pore pressure,but is affected by temperature.The increase in the pressure of hydrogen-containing gas can cause the increase in the signal intensity of T_(2) distribution.The heterogeneity of pore structure is aggravated due to the hydrate formation in porous media.The water conversion rate fluctuates during the hydrate formation.The sand size affects the water conversion ratio and rate by affecting the specific surface of sand in unsaturated porous media.For the fine sand sample,the large specific surface causes a large gas-water contact area resulting in a higher water conversion rate,but causes a large water-sand contact area resulting in a low water conversion ratio(C_(w)=96.2%).The clay can reduce the water conversion rate and ratio,especially montmorillonite(C_(w)=95.8%).The crystal layer of montmorillonite affects the pore water conversion characteristics by hindering the conversion of interlayer water. 展开更多
关键词 Porous media Unsaturated sand Methane hydrates Low-field NMR Pore water conversion Hydrate formation nghs exploration trial engineering Oil and gas exploration engineering Shenhu area South China Sea
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Migration and accumulation characteristics of natural gas hydrates in the uplifts and their slope zones in the Qiongdongnan Basin,China 被引量:4
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作者 Yu-lin He Jin-qiang Liang +5 位作者 Zeng-gui Kuang Wei Deng Jin-feng Ren Hong-fei Lai Miao-miao Meng Wei Zhang 《China Geology》 2022年第2期234-250,共17页
Various factors controlling the accumulation of natural gas hydrates(NGHs)form various enrichment and accumulation modes through organic combination.This study mainly analyzes the geological and geophysical characteri... Various factors controlling the accumulation of natural gas hydrates(NGHs)form various enrichment and accumulation modes through organic combination.This study mainly analyzes the geological and geophysical characteristics of the NGHs occurrence in the uplifts and their slope zones within the deep-water area in the Qiongdongnan(QDN)Basin(also referred to as the study area).Furthermore,it investigates the dominant governing factors and models of NGHs migration and accumulation in the study area.The results are as follows.(1)The uplifts and their slope zones in the study area lie in the dominant pressure-relief direction of fluids in central hydrocarbon-rich sags in the area,which provide sufficient gas sources for the NGHs accumulation and enrichment through pathways such as gas chimneys and faults.(2)The top and flanks of gas chimneys below the bottom simulating reflectors(BSRs)show high-amplitude seismic reflections and pronounced transverse charging of free gas,indicating the occurrence of a large amount of gas accumulation at the heights of the uplifts.(3)Chimneys,faults,and high-porosity and high-permeability strata,which connect the gas hydrate temperature-pressure stability zones(GHSZs)with thermogenic gas and biogenic gas,form the main hydrate migration system.(4)The reservoir system in the study area comprises sedimentary interlayers consisting of mass transport deposits(MTDs)and turbidites.In addition,the reservoir system has developed fissure-and pore-filling types of hydrates in the pathways.The above well-matched controlling factors of hydrate accumulation enable the uplifts and their slope zones in the study area to become the favorable targets of NGHs exploration. 展开更多
关键词 Gas chimney OVERPRESSURE Migration characteristics of gas hydrates Accumulation characteristics of gas hydrates Oil and gas exploration engineering nghs exploration trial engineering Uplifts and slope zones Qiongdongnan Basin China
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Hydrate phase transition and seepage mechanism during natural gas hydrates production tests in the South China Sea:A review and prospect 被引量:3
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作者 Xu-wen Qin Cheng Lu +1 位作者 Ping-kang Wang Qian-yong Liang 《China Geology》 2022年第2期201-217,共17页
Natural gas hydrates(NGHs)are globally recognized as an important type of strategic alternative energy due to their high combustion efficiency,cleanness,and large amounts of resources.The NGHs reservoirs in the South ... Natural gas hydrates(NGHs)are globally recognized as an important type of strategic alternative energy due to their high combustion efficiency,cleanness,and large amounts of resources.The NGHs reservoirs in the South China Sea(SCS)mainly consist of clayey silts.NGHs reservoirs of this type boast the largest distribution range and the highest percentage of resources among NGHs reservoirs in the world.However,they are more difficult to exploit than sandy reservoirs.The China Geological Survey successfully carried out two NGHs production tests in the Shenhu Area in the northern SCS in 2017 and 2020,setting multiple world records,such as the longest gas production time,the highest total gas production,and the highest average daily gas production,as well as achieving a series of innovative theoretical results.As suggested by the in-depth research on the two production tests,key factors that restrict the gas production efficiency of hydrate dissociation include reservoir structure characterization,hydrate phase transition,multiphase seepage and permeability enhancement,and the simulation and regulation of production capacity,among which the hydrate phase transition and seepage mechanism are crucial.Study results reveal that the hydrate phase transition in the SCS is characterized by low dissociation temperature,is prone to produce secondary hydrates in the reservoirs,and is a complex process under the combined effects of the seepage,stress,temperature,and chemical fields.The multiphase seepage is controlled by multiple factors such as the physical properties of unconsolidated reservoirs,the hydrate phase transition,and exploitation methods and is characterized by strong methane adsorption,abrupt changes in absolute permeability,and the weak flow capacity of gas.To ensure the long-term,stable,and efficient NGHs exploitation in the SCS,it is necessary to further enhance the reservoir seepage capacity and increase gas production through secondary reservoir stimulation based on initial reservoir stimulation.With the constant progress in the NGHs industrialization,great efforts should be made to tackle the difficulties,such as determining the micro-change in temperature and pressure,the response mechanisms of material-energy exchange,the methods for efficient NGHs dissociation,and the boundary conditions for the formation of secondary hydrates in the large-scale,long-term gas production. 展开更多
关键词 Natural gas hydrates Clayey silt reservoir Hydrate phase transition Seepage mechanism Oil and gas exploration engineering nghs exploration trial engineering South China Sea China
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Distributed optical fiber acoustic sensor for in situ monitoring of marine natural gas hydrates production for the first time in the Shenhu Area,China 被引量:3
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作者 Xiang-ge He Xue-min Wu +6 位作者 Lei Wang Qian-yong Liang Li-juan Gu Fei Liu Hai-long Lu Yi Zhang Min Zhang 《China Geology》 2022年第2期322-329,共8页
The distributed acoustic sensor(DAS)uses a single optical cable as the sensing unit,which can capture the acoustic and vibration signals along the optical cable in real-time.So it is suitable for monitoring downhole p... The distributed acoustic sensor(DAS)uses a single optical cable as the sensing unit,which can capture the acoustic and vibration signals along the optical cable in real-time.So it is suitable for monitoring downhole production activities in the process of oil and gas development.The authors applied the DAS system in a gas production well in the South China Sea for in situ monitoring of the whole wellbore for the first time and obtained the distributed acoustic signals along the whole wellbore.These signals can clearly distinguish the vertical section,curve section,and horizontal production section.The collected acoustic signal with the frequency of approximately 50 Hz caused by the electric submersible pump exhibit a signal-to-noise ratio higher than 27 dB.By analyzing the acoustic signals in the production section,it can be located the layers with high gas production rates.Once an accurate physical model is built in the future,the gas production profile will be obtained.In addition,the DAS system can track the trajectory of downhole tools in the wellbore to guide the operation.Through the velocity analysis of the typical signals,the type of fluids in the wellbore can be distinguished.The successful application of the system provides a promising whole wellbore acoustic monitoring tool for the production of marine gas hydrate,with a good application prospect. 展开更多
关键词 Gas hydrate production monitoring Optical fiber sensor Distributed acoustic sensor In situ monitoring Fluid type nghs exploration trial engineering Oil and gas exploration engineering Shenhu Area South China Sea
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Assessment of natural gas hydrate reservoirs at Site GMGS3-W19 in the Shenhu area,South China Sea based on various well logs 被引量:2
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作者 Dong-ju Kang Ying-feng Xie +4 位作者 Jing-an Lu Tong Wang Jin-qiang Liang Hong-fei Lai Yun-xin Fang 《China Geology》 CAS 2022年第3期383-392,共10页
To obtain the characteristics of the gas hydrate reservoirs at GMGS3-W19,extensive geophysical logging data and cores were analyzed to assess the reservoir properties.Sediment porosities were estimated from density,ne... To obtain the characteristics of the gas hydrate reservoirs at GMGS3-W19,extensive geophysical logging data and cores were analyzed to assess the reservoir properties.Sediment porosities were estimated from density,neutron,and nuclear magnetic resonance(NMR)logs.Both the resistivity and NMR logs were used to calculate gas hydrate saturations,the Simandoux model was employed to eliminate the effects of high clay content determined based on the ECS and core data.The density porosity was closely in agreement with the core-derived porosity,and the neutron porosity was higher while the NMR porosity was lower than the density porosity of sediments without hydrates.The resistivity log has higher vertical resolution than the NMR log and thus is more favorable for assessing gas hydrate saturation with strong heterogeneity.For the gas hydrate reservoirs at GMGS3-W19,the porosity,gas hydrate saturation and free gas saturation was 52.7%,42.7%and 10%,on average,respectively.The various logs provide different methods for the comprehensive evaluation of hydrate reservoir,which supports the selection of candidate site for gas hydrate production testing. 展开更多
关键词 Natural gas hydrates(nghs) Low gamma Reservoir properties SATURATION NMR Marine hydrates trial exploration engineering Shenhu area South China Sea
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